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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
191

Microscopie et spectroscopie de photodétachement; mesure de la section efficace de photodétachement de H- à 1064 nm par observation du comportement asymptotique du régime saturé / Photodetachment spectroscopy and microscopy; measurement of the photodetachment cross section of H- at 1064 nm by the observation of the asymptotic behaviour in the saturated regime

Vandevraye, Mickael 13 December 2013 (has links)
Dans cette thèse, nous initions la démonstration, à échelle réduite, de la faisabilité du photodétachement presque total, par laser, d’un jet d'ions négatifs d'hydrogène en cavité optique Fabry-Perot pour les futurs injecteurs de neutres destinés au chauffage des plasmas des réacteurs de fusion nucléaire.Nous élaborons une nouvelle méthode de mesure d’une section efficace de photodétachement, dont la connaissance à la longueur d’onde d’excitation est requise pour le dimensionnement de la cavité Fabry-Perot, basée sur l’observation de la saturation en régime d’éclairement impulsionnel. Le calcul analytique de l’accroissement du signal de détachement produit lors de l’éclairement d’un jet d’ions par une impulsion laser supposée gaussienne, fait apparaître une contrainte mathématique sur le flux requis pour transiter vers le régime saturé. Cette contrainte est une caractéristique de la transition vers la saturation pour toutes les expériences réalisées en faisceau gaussien et pour tous les processus d’interaction lumière-matière linéaires. Avec cette méthode, nous déduisons une section efficace de photodétachement de H- à 1064 nm – longueur d’onde sélectionnée pour les futurs injecteurs de neutres – en léger désaccord avec les prédictions théoriques.Pour réduire les exigences technologiques sur la cavité et le laser, nous étudions les résonances de Landau qui apparaissent dans le spectre de photodétachement en champ magnétique. S’asservir sur l’une de ces résonances permettrait d’augmenter la probabilité de photodétachement à un flux donné.Par ailleurs, nous présentons nos mesures des affinités électroniques du phosphore, du sélénium et de l’étain, réalisées avec le microscope de photodétachement. L'expérience de microscopie de photodétachement du phosphore est la première où l’atome neutre est laissé dans un terme excité. / In this thesis, we initiate the demonstration, at a reduced scale, of the feasibility of the almost-complete laser photodetachment of negative hydrogen ion beams in a Fabry-Perot optical cavity for future neutral beam injectors for the heating of fusion power plants plasmas.We develop a new method to measure a photodetachement cross section, the knowledge of which at the exciting wavelength is needed to scale the Fabry-Perot cavity, based on the observation of the saturation in a pulsed lighting regime. The analytical calculus of the detachment signal growth produced while illuminating a negative ion beam with a Gaussian laser pulse bring out a mathematical constraint on the required flux to pass through the saturated regime. This constraint is the signature of the transition toward the saturation for all experiment carried out in Gaussian beam and for all linear light-matter interaction processes. With this method, we measure the photodetachement cross section of H- at 1064 nm – selected wavelength for future neutral beam injectors – in slight disagreement with theoretical predictions.To reduce the technological requirement on the Fabry-Perot cavity and the laser, we study Landau resonances which appear in the photodetachement spectrum. Locking the laser on one of these resonances would allow increasing the photodetachment probability at a given flux.We also present our phosphorus, selenium and tin electron affinity measurements carried out with the photodetachment microscope. The photodetachment microscopy experiment of phosphorus is the first one where the neutral atom is left in an excited term.
192

Investigação cinética de modos geodésicos de baixas frequências em plasmas magnetizados / Kinetic investigation of low frequency geodesic modes in magnetized plasmas

Sgalla, Reneé Jordashe Franco 29 July 2014 (has links)
Devido à sua importância em turbulência causada por ondas de deriva e à aplicação com propósitos em diagnósticos de plasma, a investigação de fluxos zonais (ZF) e modos acústicos geodésicos (GAM) tem atraído bastante atenção na literatura em física de plasmas. Nesta tese, primeiramente consideramos efeitos de equilíbrio com rotação poloidal e toroidal nestes modos, posteriormente investigamos efeitos diamagnéticos em GAM a partir de um modelo de dois fluido, no qual incluímos viscosidade paralela de íons e, na parte final, consideramos amortecimento de Landau e efeitos diamagnéticos simultaneamente no estudo de GAM, porém, a partir do modelo girocinético. Efeitos diamagnéticos são causados por termos que envolvem gradientes de densidade e de temperatura provenientes da função Maxwelliana de equilíbrio. O acoplamento entre os harmônicos poloidais, $m = \\pm1$, e as derivadas radiais de quantidades macroscópicas do plasma é responsável pelo aumento no valor da frequência no GAM de alta frequência e pela instabilidade no GAM de baixa frequência. Este tipo de instabilidade, que é proporcional à frequência diamagnética de elétrons e à razão entre os gradientes de temperatura e de densidade, é mais propenso a ocorrer em posições radiais em que o fator segurança é alto. Modos geodésicos são fracamente amortecidos devido a um mecânismo não colisional conhecido por amortecimento de Landau, o qual é causado pela interação entre a onda eletrostática e partículas carregadas, íons no caso, e a taxa de amortecimento é maior próximo ao centro da coluna de plasma, onde o fator de segurança assume valores mais baixos. O equilíbrio MHD com rotação foi investigado em três regimes com relação às superfícies magnéticas: isotérmico, adiabático e isométrico. Foi observado que o gradiente de temperatura possui sentido oposto em relação à velocidade de rotação poloidal apenas no regime isométrico. Ao considerar equilíbrio com rotação e superfícies magnéticas isotérmicas e incluir fluxo de calor na equação da energia, observamos que ZF apresentam frequência não-nula, a qual é proporcional à velocidade de rotação poloidal e inversamente proporcional ao fator de segurança. Como direções futuras ressaltamos que é importante considerar efeitos eletromagnéticos, estudar automodos geodésicos e incluir o efeito de partículas aprisionadas para o desenvolvimento da física de ZF e GAM. Tal desenvolvimento beneficiará tanto a área de transporte em tokamaks como a área de diagnósticos, na qual a obtenção do perfil radial da temperatura de íons e do fator de segurança é um dos objetivos. Nesta área, um novo tipo de diagnóstico conhecido como espectroscopia em modos acústicos geodésicos está sendo desenvolvido baseado no estudo de automodos. / Due to the important role in drift wave turbulence and applications for plasma diagnostic purposes, the investigation of zonal flows (ZF) and associated geodesic acoustic modes (GAM) has arisen much attention in the plasma physics literature. In this thesis, first we consider equilibrium poloidal and toroidal rotation effects on these modes using the ideal MHD model, then we investigate diamagnetic effects on GAM using a two fluid model that includes parallel ion viscosity, and, in the final step, we include both Landau damping and diamagnetic effects on the study of GAM within the framework of the gyrokinetic model. By diamagnetic effects we mean the density and temperature radial gradients terms coming from the equilibrium Maxwellian distribution function. The effects caused by the coupling between the $m = \\pm1$ poloidal harmonics and the radial derivatives of equilibrium macroscopic quantities are responsible for an increase in the frequency value of the high frequency GAM and for an instability in the low frequency GAM. This instability, which is proportional to the electron drift frequency and the ratio between ion temperature and density gradients, are more likely to occur in radial positions where the safety factor is high. We observe that geodesic modes are slowly damped by a collisionlees mechanism known as Landau damping which is caused by the wave particle interaction between the eletrostatic potential and the íons. This damping is enhanced near the center of the plasma column, where the safety factor has lower values. Equilibrium MHD with plasma rotation were investigated in three regimes regarding the magnetic surfaces: isotherm, adiabatic and isometric. It is found that the temperature gradient has opposite directions compared to the poloidal rotation only for the isometric regime. By considering equilibrium rotation with isotherm magnetic surfaces and including heat flux we observed that ZF has a non-zero frequency which is proportional to the poloidal velocity and the inverse of the safety factor. For future directions we point out that electromagnetic effects, geodesic eigenmodes and trapped particles physics should be important for the development of the ZF and GAM physics, either in the area of anomalous transport caused by drift wave turbulence or for diagnostic purposes for obtaining the radial profile of the ion temperature and the safety factor. In this area, a new kind of diagnostic known as geodesic acoustic mode spectroscopy is being developing based on the study of eigenmodes.
193

Dynamique spatiale de la lumière et saturation de l’effet Kerr / A study of light dynamics and measurements of the nonlinear optical characteristics of carbon disulphide

Besse, Valentin 12 December 2014 (has links)
Nous présentons une étude de la dynamique de la lumière et des mesures des caractéristiques non-linéaires optiques dans le disulfure de carbone.Dans la première partie, nous calculons dans le cadre d’un modèle classique des expressions des susceptibilités non-linéaires jusqu’au cinquième ordre, en tenant compte des corrections de champ local. Nous formulons différentes hypothèses que nous confirmons ou infirmons par la mesure des indices d’absorption et de réfraction non-linéaires. Celles-ci sont obtenues en combinant deux méthodes de caractérisation des non-linéarités au sein d’un système 4fd’imagerie. L’analyse des données expérimentales utilise une méthode nouvellement développée, qui consiste à inverser numériquement, par la méthode de Newton, les solutions analytiques des équations différentielles qui décrivent l’évolution du faisceau.Dans la deuxième partie, nous observons la filamentation d’un faisceau laser à la longueur d’onde de 532 nm et en régime picoseconde. Puis nous procédons à la mesure de l’indice de réfraction non-linéaire effectif du troisième ordre n2,eff en fonction de l’intensité incidente. Par un ajustement de la courbe de saturation de l’effet Kerr,nous développons un nouveau modèle. La résolution numérique de celui-ci reproduit la filamentation observée.La dernière partie est consacrée à l’étude de la dynamique des solitons dissipatifs au sein de milieux à gains et pertes non-linéaires. La résolution numérique de l’équation complexe de Ginzburg-Landau cubique-quintique est réalisée suivant différentes configurations :soliton fondamental, dipôle, quadrupôle,vortex carré et rhombique. / We present a study of light dynamics and measurements of the nonlinear optical characteristics of carbon disulphide. In the first part, we calculate using the classical model, the nonlinear susceptibilities up to the fifth order taking into account local field corrections. We express different assumptions that we confirm or refute by measuring the nonlinear absorption coefficient and the nonlinear refractive index. The measurements are performed by means of two nonlinear characterization methods combined with an imaging 4f system. We analyse the experimental data using a newly developed method which numerically inverts the analytical solutions of the differential equations which describe the evolution of the beam, using Newton’s method. In the second part, we observe light filamentation at wavelength 532 nm, in the picoseconds regime. Then we measure the effective third order nonlinear refractive index n2,eff versus the incident intensity. By fitting the curve of the Kerr effect saturation, we develop a new model. Numerically solving this model, allows us to reproducethe experimentally observed filamentation. The last part is dedicated to the study of dissipative solitons dynamics. The complex Ginzburg-Landau equation with cubic-quintic nonlineraties is numerically solved in various configurations : soliton fundamental dipole, quadrupole, vortex and square rhombic.
194

Contribution to the multi-physics study of porous media heated intermittently by RF energy in a coaxial cell / Contribution à l'étude multi-physique du chauffage de milieux poreux par énergie radiofréquence intermittente dans une cellule coaxiale

Wu, Li 17 December 2015 (has links)
Avec l'explosion économique et démographique, le besoin en matériaux poreux tels que la nourriture, le bois ou la brique connait une croissance telle que leur commerce est très actif dans le monde entier. La déshydratation des milieux poreux étant l'une des plus importantes et stables méthodes pour leur préservation, il est parfois nécessaire d'utiliser cette méthode pour stocker, transporter et mieux utiliser ces matériaux. Depuis la Seconde Guerre Mondiale, il existe des méthodes de chauffage RF dans bien des domaines. Bien que beaucoup de nouvelles technologies de chauffage sont devenues extrêmement importantes du point de vue commercial et très largement utilisées, le chauffage RF est préféré aux autres moyens de chauffage pour plusieurs raisons: 1) le résultat est plus rapide, nécessitant un moindre temps pour atteindre la température désirée; 2) le chauffage radiofréquence peut être spatialement plus uniforme que les méthodes conventionnelles de chauffage; 3) le chauffage par radiofréquences peut être allumé ou éteint instantanément; 4) il est plus efficace pour un grand volume de nourriture; 5) l'investissement nécessaire est moindre, etc. Cependant on trouve très peu d'information sur le chauffage radiofréquence pour la déshydratation des matériaux poreux dans la littérature. Par conséquent, il est intéressant d'étudier les interactions entre les radiofréquences et les milieux poreux. Afin d'améliorer le taux d'énergie radiofréquence utilisé, cette thèse propose une cavité coaxiale pour étudier le cycle de chauffage radiofréquence d'une pomme de terre dans différents états : solide, liquide et gazeux. Dans un premier temps nous avons étudié les mécanismes de transport de masse et de chaleur dans le milieu poreux sans radiofréquence sur le modèle d'une brique 1D à l'aide d'un code Matlab. Les résultats de simulation ont été comparés qualitativement avec ceux du papier de référence. A partir de ce modèle, nous avons construit et simulé un modèle 2D axisymétrique avec le chauffage radiofréquence périodique d'une pomme de terre. L’équation de Landau et Lifshitz, Looyenga a été utilisées pour prédire le changement de permittivité effective dans la simulation car il est difficile d'obtenir une donnée précise pour un milieu poreux. La salinité de l'échantillon chauffé (qui est une caractéristique très importante) a été estimée. Les effets de différentes périodes, hauteurs de l'échantillon et puissances de la distribution en température ont été étudiés et analysés. Nous avons également mené des expériences similaires pour mesurer les changements de température durant le processus de chauffage. Tous les résultats de simulations sont comparés qualitativement avec les résultats mesurés. De même nous avons effectué des analyses de sensibilité et en avons conclu quelques suggestions concernant l'amélioration des effets du chauffage. A partir de ces suggestions, nous avons proposé un nouveau modèle de chauffage radiofréquence afin de s'affranchir des défauts du modèle précédent. / With the rapid growth of economic and population explosion, the demands for porous media such as foods, woods and bricks enlarge so wildly that their trades are busy around the world. To be stored, transported and utilized better, dehydration of porous media is necessary since drying is one of the most important and stable methods for preserving materials. After World War two, possible RF heating in many domains was suggested. Even though a lot of novel heating technologies have become extremely commercially important and been widely used, RF heating is preferred to the other heating means for several significant reasons: 1) it is rapid and requires less time to come up to the desired process temperature; 2) radio frequency heating may be relatively spatially more uniform than conventional heating; 3) radio frequency heating systems can be turned on or off instantly; 4) it is better for large, thick food; 5) it requires lower investment costs, and so on. However, little information on radio frequency heating for commercial drying of porous media is available in the published literature. Therefore, it will be interesting to research the interaction between RF and porous media. This thesis, to improve the use ratio of RF energy further, proposed a coaxial cell to research RF cycling heating potato with different phases: solid, liquid and gas. The mechanism of mass and heat transport in the porous media without RF energy was studied first by solving the governing equations of 1D brick model with Matlab codes. The calculated results compared qualitatively with those in the reference paper. Based on that model, an axisymmetric 2D model with periodically RF heating potato was built and simulated. Landau and Lifshitz, Looyenga equation was employed to predict the effective permittivity change in the simulation since it is difficult to get the accurate measurement data of porous media. The salinity of heated sample- a very important parameter of the mixing rule-was estimated. The effects of different process period, variation of height of sample and power on the temperature distributions were studied and analyzed. Corresponding experiments were also conducted to measure the temperature change during the heating process. All the simulated results compared qualitatively with the measured ones. Sensitivity analysis was also done and some suggestions on the improvement of heating effect were concluded. Based on the suggestions, a new RF heating model was proposed to overcome the drawbacks of our previous model.
195

Theoretical studies of PbTiO3 and SrTiO3 under uniaxial mechanical constraints combining firstprinciples calculations and phenomenological Landau theory / Les études théoriques de PbTi03 et SrTi03 sous contraintes mécaniques uniaxiales combinant les calculs de premier principe et la théorie phénoménologique de Landau

Sharma, Henu 29 September 2014 (has links)
Dans cette thèse, nous présentons des études théoriques de matériaux pérovskites sous con-trainte mécanique uniaxiale en combinant les calculs de premier principe DFT ainsi quela théorie phénoménologique de type Landau. Les pérovskites ABO3 forment une classetrès importante de matériaux fonctionnels, qui peuvent présenter un large éventail de pro-priétés (e.g., supraconductivité, magnétisme, ferroélectricité, multiferroïcité, transitionsmétal-isolant. . . ) grâce aux petites distorsions d’ une même structure prototype cubique.Bien que ces composés aient été largement étudiés expérimentalement et théoriquement, ilreste encore des questions importantes et non résolues concernant les effets de contraintesuniaxiales. Au cours de ces dernières années, l’ ingénierie de contrainte a été décrite commeune approche originale pour ajuster les propriétés ferroélectriques pérovskites ABO3. Alorsque les effets de tension épitaxié-biaxiale et pression la hydrostatique, sont plutôt bien com-pris dans cette classe de matériaux, très peu est connu en ce qui concerne l’ effet des con-traintes mécaniques uniaxiales. Notre étude est motivée par ce manque de compréhensionactuelle de l’ effet de tension et compression uniaxiale, qui a été jusqu’à présent presquetotalement négligé. Deux composés prototypes sont étudiés dans le détail: PbTiO3 etSrTiO3. Après une introduction générale sur les composés ABO3 et les calculs techniques(ab initio et modèle phénoménologique de Landau), nous avons étudié l’ effet de contraintesmécaniques sur ces matériaux dans notre thèse.PbTiO3 est un composé ferroélectrique prototypique et également l’ un des composantsmère de la solution solide Pb(Zr,Ti)O3 (PZT), qui est le piézoélectrique le plus largementutilisé dans des applications. Pour PbTiO3, nous avons montré que indépendammentde la contrainte mécanique uniaxiale appliquée, le système conserve un état fondamentalpurement ferroélectrique avec la polarisation alignée, soit le long de la direction de lacontrainte (en phase FEz) ou bien le long d’ un des axes pseudo-cubique, qui lui estperpendiculaire (phase de FEx). Cela contraste avec les cas de contraintes mécaniquesisotropes ou bi-axial, pour qui de nouvelles phases combinant des modes ferroélectriqueset antiferrodistortives ont déjà été décrites. Sous contrainte uniaxiale, PbTiO3 passe d’unétat fondamental FEx sous compression à un état fondamental FEz en tension au-delà d’une tension critique !czz! +1%. Sous contrainte uniaxiale, PbTiO3 présente soit un étatfondamental FEx sous compression ("zz < 0) ou un état fondamental de FEz sous tension("zz > 0). Cependant, ici, un brusque saut des paramètres structuraux est prévu sousdes contraintes de compression et de traction à des valeurs critiques "zz! +2 GPa et −8GPa. Ce comportement semble similaire à celui pré-prédit sous pression isotrope négativeet pourrait se révéler utile en pratique pour améliorer la réponse piézoélectrique dans lesnano-composants.Le deuxième composé intéressant est SrTiO3. Il a été largement étudié au cours desdernières décennies, en raison de ses propriétés exceptionnelles à basse température. Dansce travail, nous avons élargi nos précédentes études de PbTiO3, en explorant théorique-ment les effets de pression sur la perovskite SrTiO3, combinant les premiers principes decalculs et un modèle phénoménologique de type Landau. Nous avons discuté de l’évolutiondes fréquences des phonons de SrTiO3 des trois cas de contraintes isotrope, uniaxial ettensions biaxiaux en utilisant les calculs de premier principe. Nous confirmons des travauxexpérimentaux précédents sur SrTiO3 que ça soit en contrainte épitaxiée ou sous pressionhydrostatique. Enfin, nous avons calculé de diagramme de phase de SrTiO3 sous contrainteuniaxiale, obtenue à partir de la théorie de Landau que nous avons comparé aux calculsde premier principe. / In the present thesis we present theoretical studies of perovskite compounds under uniax-ial mechanical constraints combining first-principles DFT calculations approach and phe-nomenological Landau theory. ABO3 perovskites form a very important class of functionalmaterials that can exhibit a broad range of properties (e.g., superconductivity, magnetism,ferroelectricity, multiferroism, metal-insulator transitions. . . ) within small distortions ofthe same simple prototype cubic structure. Though these compounds have been exten-sively studied both experimentally and computationally, there are still unresolved issuesregarding the effect of pressure. In recent years, strain engineering has reported to bean original approach to tune the ferroelectric properties of perovskite ABO3 compounds.While the effect of epitaxial biaxial strain and hydrostatic strain is rather well understoodin this class of materials, very little is yet known regarding the effect of uniaxial mechanicalconstraints. Our study is motivated by the little existing understanding of the effect ofuniaxial strain and stress, that has been up to now almost totally neglected. Two proto-type compounds are studied in detail: PbTiO3 and SrTiO3. After a general introductionon ABO3 compounds and calculations techniques (ab initio and phenomenological Landaumodel), we studied the effect of mechanical constraints in these compounds in our thesis.PbTiO3 is a prototypical ferroelectric compound and also one of the parent components ofthe Pb(Zr,Ti)O3 solid solution (PZT), which is the most widely used piezoelectrics. ForPbTiO3, we have shown that irrespectively of the uniaxial mechanical constraint applied,the system keeps a purely ferroelectric ground-state, with the polarization aligned eitheralong the constraint direction (FEz phase) or along one of the pseudocubic axis perpen-dicular to it (FEx phase). This contrasts with the case of isotropic or biaxial mechanicalconstraints for which novel phases combining ferroelectric and antiferrodistortive motionshave been previously reported. Under uniaxial strain, PbTiO3 switches from a FEx groundstate under compressive strain to FEz ground-state under tensile strain, beyond a critical strain !czz! +1%. Under uniaxial stress, PbTiO3 exhibits either a FEx ground state undercompression ("zz < 0) or a FEz ground state under tension ("zz > 0). Here, however, anabrupt jump of the structural parameters is also predicted under both compressive andtensile stresses at critical values "zz! +2 GPa and −8 GPa. This behavior appears similarto that predicted under negative isotropic pressure and might reveal practically useful toenhance the piezoelectric response in nanodevices.The second compound of interest is SrTiO3. It has been widely studied in the past decadesdue to its unusual properties at low temperature. In this work, we have extended ourprevious investigations on PbTiO3 by exploring theoretically the pressure effects on per-ovskite SrTiO3 combining the first-principles calculations and a phenomenological Landaumodel. We have discussed the evolution of phonon frequencies of SrTiO3 with the threeisotropic, uniaxial and biaxial strains using first-principles calculations. We also reproducethe previous work done in SrTiO3 with epitaxial strain and hydrostatic strain. Finally,we have calculated the phase diagram of SrTiO3 under uniaxial strain, as obtained fromLandau theory and discussed how it compares with the first-principles calculations.
196

Níveis de Landau-Coriolis

Silva, Júlio Eloísio Brandão da 01 February 2013 (has links)
Submitted by Vasti Diniz (vastijpa@hotmail.com) on 2017-09-13T11:51:46Z No. of bitstreams: 1 arquivototal.pdf: 831966 bytes, checksum: a9f68724ebd2fdd53f6f561f0f45d42c (MD5) / Made available in DSpace on 2017-09-13T11:51:46Z (GMT). No. of bitstreams: 1 arquivototal.pdf: 831966 bytes, checksum: a9f68724ebd2fdd53f6f561f0f45d42c (MD5) Previous issue date: 2013-02-01 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / Inertial effects, such as Coriolis’ and centrifuge forces play an interesting role on classical mechanics and currently has been largely used in quantum mechanics, including in analogies with the electromagnetic effects. However, these analogies between the inertial forces on the massives particules and the electromagnetic forces on charged particles is not new. They were explored by Aharonov and Carmi in 1970 and by Tsai and Nelson in 1988 in the context of a rotational quantum phase like an Aharonov-Bohm phase. Based in this analogy, Dattoli and Quattromini, introduced Coriolis’ analogue quantum states to Landau levels. In 1915, Barnett had already published a paper about magnetization due to rotation which recently had a renewed interest applyed to nanostructures. A rotational analogy of the classical Hall effect was proposed and rotational inertial forces were studied in spintronic. Energy spectra like Landau levels appear under the action of Coriolis forces when the centrifuge force acting on free electrons is compensated by a radial electric field. In this work, we will demonstrate effects caused by rotation and magnetic field in a spinning conductor disc. We will study both the electromagnetic and inertial interactions simultaneously. Some values to the relation between the magnetic field and the rotation will be chosen and this will result in Landau-like levels to a system with resultant force composed by Coriolis’ and magnetic forces. A similar behavior for the energy spectrum will be found without a magnetic force composing the resultant force. / Efeitos inerciais, tais como a força centrífuga e a de Coriolis, desempenham um papel importante na mecânica clássica e atualmente têm sido amplamente explorados na mecânica quântica, inclusive em analogias com efeitos eletromagnéticos. No entanto, essas analogias entre as forças inerciais sobre partículas massivas e as forças electromagnéticas sobre partículas carregadas não é nenhuma novidade. Elas foram exploradas por Aharonov e Carmi em 1970 e por Tsai e Neilson em 1988 no contexto de uma fase quântica rotacional similar à fase de Aharonov- Bohm. Baseados nessa mesma analogia, Dattoli e Quattromini introduziram estados quânticos de Coriolis análogos aos níveis de Landau. Em 1915, Barnett já havia publicado um artigo sobre magnetização devido à rotação o qual teve recentemente um interesse renovado aplicado a nanoestruturas. Um análogo rotacional do efeito Hall clássico foi proposto e os efeitos inerciais da rotação foram estudados em spintrônica. Espectros de energia tipo níveis de Landau aparecem sob a ação da força de Coriolis quando a força centrífuga agindo nos elétrons livres é compensada por um campo elétrico radial. Neste trabalho, vamos demonstrar efeitos devido à rotação e ao campo magnético em um disco condutor girante. Estudaremos as interações eletromagnéticas e inerciais simultaneamente. Alguns valores para a relação entre o campo magnético e a rotação serão escolhidos e resultarão em níveis tipo Landau para um sistema com força resultante composta pelas forças de Coriolis e magnética. Um mesmo comportamento para o espectro de energia será obtido sem força magnética compondo a força resultante.
197

Quantização de Landau para quadrupolo elétrico.

Melo, Jilvan Lemos de 22 October 2010 (has links)
Made available in DSpace on 2015-05-14T12:14:05Z (GMT). No. of bitstreams: 1 Arquivototal.pdf: 5046450 bytes, checksum: bd56c31f5c1b1739dfc96f350ac77b34 (MD5) Previous issue date: 2010-10-22 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / In this work we discuss the importance of the quantum phases using the Aharonov-Bohm Effect for charged particles and neutral particles with magnetic dipole moment(Aharonov- Casher Effect) and electric dipole moment(He-McKellar-Wilkens Effect) and atoms with electric quadrupole moment. It takes advantage of the initial study of such systems to show the emergence of Landau levels in the dynamics of a particle in two situations: when the particle is charged and when it is neutral. In the case of a neutral particle is considered that it possesses electric dipole moment. In addition it is the first time which is approached a neutral atom with electric quadrupole moment. / Neste trabalho discutimos a importância das fases quânticas usando o Efeito Aharonov-Bohm para partículas carregadas e partículas neutras com momento de dipolo magnético (Efeito Aharonov-Casher) e momento de dipolo elétrico (Efeito He-McKellar-Wilkens), e átomos com momento de quadrupolo elétrico. Tira-se vantagem do estudo inicial de tais sistemas para mostrar a emersão de níveis de Landau na dinâmica de uma partícula em duas situações: quando a partícula está carregada e quando ela é neutra. No caso de uma partícula neutra é considerado que esta possui momento de dipolo elétrico. Além disso é a primeira vez que é abordado um átomo neutro com momento de quadrupolo elétrico.
198

Aplica??es da q-?lgebra em f?sica da mat?ria condensada

Marinho, Andr? Afonso Ara?jo 25 April 2014 (has links)
Made available in DSpace on 2014-12-17T15:15:01Z (GMT). No. of bitstreams: 1 AndreAAM_TESE.pdf: 2226063 bytes, checksum: fe5fa44772a8628a39e211a6a6d4e925 (MD5) Previous issue date: 2014-04-25 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / We address the generalization of thermodynamic quantity q-deformed by q-algebra that describes a general algebra for bosons and fermions . The motivation for our study stems from an interest to strengthen our initial ideas, and a possible experimental application. On our journey, we met a generalization of the recently proposed formalism of the q-calculus, which is the application of a generalized sequence described by two parameters deformation positive real independent and q1 and q2, known for Fibonacci oscillators . We apply the wellknown problem of Landau diamagnetism immersed in a space D-dimensional, which still generates good discussions by its nature, and dependence with the number of dimensions D, enables us future extend its application to systems extra-dimensional, such as Modern Cosmology, Particle Physics and String Theory. We compare our results with some experimentally obtained performing major equity. We also use the formalism of the oscillators to Einstein and Debye solid, strengthening the interpretation of the q-deformation acting as a factor of disturbance or impurity in a given system, modifying the properties of the same. Our results show that the insertion of two parameters of disorder, allowed a wider range of adjustment , i.e., enabling change only the desired property, e.g., the thermal conductivity of a same element without the waste essence / Abordamos a generaliza??o das quantidades termodin?micas q-deformadas atrav?s da q-?lgebra que descreve uma ?lgebra generalizada para b?sons e f?rmions. A motiva??o para o nosso estudo surge do interesse de fortalecer nossas id?ias iniciais, a fim de propor uma poss?vel aplica??o experimental. Em nossa jornada, conhecemos uma generaliza??o recentemente proposta ao formalismo do q-c?lculo, que ? a aplica??o de uma seq??ncia generalizada, descrita por dois par?metros de deforma??o reais positivos e independentes q1 e q2, conhecidos por osciladores de Fibonacci. Aplicamos ao conhecido problema do diamagnetismo de Landau imerso em um espa?o D-dimensional, que ainda gera boas discuss?es por sua natureza, e a depend?ncia com o n?mero de dimens?es D, nos possibilita futuramente estendermos a sua aplica??o para sistemas extra-dimensionais, tais como a CosmologiaModerna, a F?sica de Part?culas e Teoria de Cordas. Comparamos nossos resultados com alguns obtidos experimentalmente, apresentando grande equival?ncia. Aplicamos ainda o formalismo dos osciladores aos s?lidos de Einstein e Debye, fortalecendo ? interpreta??o da q-deforma??o atuando como um fator de perturba??o ou impureza, num determinado sistema, modificando as propriedades do mesmo. Nossos resultados mostram que a inser??o de dois param?tros de desordem, possibilitaram uma maior faixa de ajuste, ou seja, possibilitando alterar apenas a propriedade desejada, por exemplo, a condutividade t?rmica de um elemento sem que o mesmo perca sua ess?ncia .
199

El?trons fortemente correlacionados na vizinhan?a de uma transi??o de fase qu?ntica

Farias, Carlene Paula Silva de 18 October 2013 (has links)
Made available in DSpace on 2014-12-17T15:15:03Z (GMT). No. of bitstreams: 1 CarlenePSF_DISSERT.pdf: 1687677 bytes, checksum: 1148ebf1be9615049fa1952b3098a785 (MD5) Previous issue date: 2013-10-18 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico / The aim of this work is to derive theWard Identity for the low energy effective theory of a fermionic system in the presence of a hyperbolic Fermi surface coupled with a U(1) gauge field in 2+1 dimensions. These identities are important because they establish requirements for the theory to be gauge invariant. We will see that the identity associated Ward Identity (WI) of the model is not preserved at 1-loop order. This feature signalizes the presence of a quantum anomaly. In other words, a classical symmetry is broken dynamically by quantum fluctuations. Furthermore, we are considering that the system is close to a Quantum Phase Transitions and in vicinity of a Quantum Critical Point the fermionic excitations near the Fermi surface, decay through a Landau damping mechanism. All this ingredients need to be take explicitly to account and this leads us to calculate the vertex corrections as well as self energies effects, which in this way lead to one particle propagators which have a non-trivial frequency dependence / Nesse trabalho derivamos e checamos a Identidade de Ward (IW) para uma teoria efetiva de baixas energias de um sistema fermi?nico acoplado a um campo de gauge U(1), em 2+1 dimens?es, na presen?a de uma superf?cie de Fermi parab?lica. As identitades deWard s?o muito importantes pois, estabelecem requisitos para que a teoria efetiva seja invariante de gauge. Veremos que a IW n?o ? preservada em ordem de 1-loop. Isto caracteriza a presen?a de uma an?malia qu?ntica. Assim, uma simetria cl?ssica ? destruida dinamicamente por flutua??es qu?nticas. O nosso sistema f?sico se encontra na vizinhan?a de um Ponto Cr?tico Qu?ntico. Portanto, as excita??es fermi?nicas, que se situam pr?ximo a superf?cie de Fermi, decaem com o tempo, produzindo assim um amortecimento de Landau. Todos esses ingredientes de um regime de forte acoplamento devem ser levados em conta. E em fun??o disso calcularemos as corre??es de v?rtice e os efeitos das auto-energias, que dessa forma fazem com que os propagadores de uma part?cula da teoria dependam da frequ?ncia de uma forma n?o-trivial
200

Investigação cinética de modos geodésicos de baixas frequências em plasmas magnetizados / Kinetic investigation of low frequency geodesic modes in magnetized plasmas

Reneé Jordashe Franco Sgalla 29 July 2014 (has links)
Devido à sua importância em turbulência causada por ondas de deriva e à aplicação com propósitos em diagnósticos de plasma, a investigação de fluxos zonais (ZF) e modos acústicos geodésicos (GAM) tem atraído bastante atenção na literatura em física de plasmas. Nesta tese, primeiramente consideramos efeitos de equilíbrio com rotação poloidal e toroidal nestes modos, posteriormente investigamos efeitos diamagnéticos em GAM a partir de um modelo de dois fluido, no qual incluímos viscosidade paralela de íons e, na parte final, consideramos amortecimento de Landau e efeitos diamagnéticos simultaneamente no estudo de GAM, porém, a partir do modelo girocinético. Efeitos diamagnéticos são causados por termos que envolvem gradientes de densidade e de temperatura provenientes da função Maxwelliana de equilíbrio. O acoplamento entre os harmônicos poloidais, $m = \\pm1$, e as derivadas radiais de quantidades macroscópicas do plasma é responsável pelo aumento no valor da frequência no GAM de alta frequência e pela instabilidade no GAM de baixa frequência. Este tipo de instabilidade, que é proporcional à frequência diamagnética de elétrons e à razão entre os gradientes de temperatura e de densidade, é mais propenso a ocorrer em posições radiais em que o fator segurança é alto. Modos geodésicos são fracamente amortecidos devido a um mecânismo não colisional conhecido por amortecimento de Landau, o qual é causado pela interação entre a onda eletrostática e partículas carregadas, íons no caso, e a taxa de amortecimento é maior próximo ao centro da coluna de plasma, onde o fator de segurança assume valores mais baixos. O equilíbrio MHD com rotação foi investigado em três regimes com relação às superfícies magnéticas: isotérmico, adiabático e isométrico. Foi observado que o gradiente de temperatura possui sentido oposto em relação à velocidade de rotação poloidal apenas no regime isométrico. Ao considerar equilíbrio com rotação e superfícies magnéticas isotérmicas e incluir fluxo de calor na equação da energia, observamos que ZF apresentam frequência não-nula, a qual é proporcional à velocidade de rotação poloidal e inversamente proporcional ao fator de segurança. Como direções futuras ressaltamos que é importante considerar efeitos eletromagnéticos, estudar automodos geodésicos e incluir o efeito de partículas aprisionadas para o desenvolvimento da física de ZF e GAM. Tal desenvolvimento beneficiará tanto a área de transporte em tokamaks como a área de diagnósticos, na qual a obtenção do perfil radial da temperatura de íons e do fator de segurança é um dos objetivos. Nesta área, um novo tipo de diagnóstico conhecido como espectroscopia em modos acústicos geodésicos está sendo desenvolvido baseado no estudo de automodos. / Due to the important role in drift wave turbulence and applications for plasma diagnostic purposes, the investigation of zonal flows (ZF) and associated geodesic acoustic modes (GAM) has arisen much attention in the plasma physics literature. In this thesis, first we consider equilibrium poloidal and toroidal rotation effects on these modes using the ideal MHD model, then we investigate diamagnetic effects on GAM using a two fluid model that includes parallel ion viscosity, and, in the final step, we include both Landau damping and diamagnetic effects on the study of GAM within the framework of the gyrokinetic model. By diamagnetic effects we mean the density and temperature radial gradients terms coming from the equilibrium Maxwellian distribution function. The effects caused by the coupling between the $m = \\pm1$ poloidal harmonics and the radial derivatives of equilibrium macroscopic quantities are responsible for an increase in the frequency value of the high frequency GAM and for an instability in the low frequency GAM. This instability, which is proportional to the electron drift frequency and the ratio between ion temperature and density gradients, are more likely to occur in radial positions where the safety factor is high. We observe that geodesic modes are slowly damped by a collisionlees mechanism known as Landau damping which is caused by the wave particle interaction between the eletrostatic potential and the íons. This damping is enhanced near the center of the plasma column, where the safety factor has lower values. Equilibrium MHD with plasma rotation were investigated in three regimes regarding the magnetic surfaces: isotherm, adiabatic and isometric. It is found that the temperature gradient has opposite directions compared to the poloidal rotation only for the isometric regime. By considering equilibrium rotation with isotherm magnetic surfaces and including heat flux we observed that ZF has a non-zero frequency which is proportional to the poloidal velocity and the inverse of the safety factor. For future directions we point out that electromagnetic effects, geodesic eigenmodes and trapped particles physics should be important for the development of the ZF and GAM physics, either in the area of anomalous transport caused by drift wave turbulence or for diagnostic purposes for obtaining the radial profile of the ion temperature and the safety factor. In this area, a new kind of diagnostic known as geodesic acoustic mode spectroscopy is being developing based on the study of eigenmodes.

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