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Medidas de seccoes de choque para reacoes de captura de neutrons no sup(57)Co, sup(137)Cs e sup(241)Am considerando a formacao de estados isomericosMAIDANA, NORA L. 09 October 2014 (has links)
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06881.pdf: 7889902 bytes, checksum: 7e22a20905b1e2b2ff4ed4439b25e2bb (MD5) / Tese (Doutoramento) / IPEN/T / Instituto de Pesquisas Energeticas e Nucleares - IPEN/CNEN-SP
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K-isomerism at high-spin beyond the fusion limitWheldon, Carl January 1999 (has links)
New high-K isomers have been populated in Ta and W by bombarding thick targets with pulsed 238U beams at 1600 MeV. The new inelastically excited multi-quasiparticle states include Kpi = 21/2- and 29/2- 3-quasiparticle isomers in 181Ta and Kpi = 7- and (16+) isomers in 186W. The Kpi = (16+) state in 186w has t1/2≥3 ms and extends the 4-quasiparticle isomer systematics beyond the limit accessible with fusion-evaporation reactions, using stable beams and targets, for the first time. In addition, a t1/2≥1 ms 3-quasiparticle isomeric state feeding a strongly coupled rotational band has been populated in Ta by nucleon transfer. The excitation energies of the intrinsic states are compared to predictions of blocked BCS calculations. A different study of high-K states used a radioactive 14C beam at 67 MeV to investigate the high-spin structure of Os. New rotational bands built on multi-quasiparticle states with Kpi = 5-, 7-, 9-, 10+ and 15+ are observed. The first crossing of the ground-state band at I = 14 h, is interpreted as involving a high-K t-band structure and explained using a two-band mixing model. The structure at higher angular momentum is dominated by intrinsic states, that exhibit a dramatic loss of isomerism. Potential-energy-surface calculations, with Lipkin-Nogami pairing, show these configurations to be triaxial, accounting for the breakdown in K conservation. The relation between the K projection and the total angular momentum is investigated for these non-axial states.
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GAS-PHASE ION CHEMISTRY AND ION TRAP METHODOLOGIES FOR TRANSMETALATION REACTIONS AND IN-DEPTH LIPID ANALYSISKimberly C Fabijanczuk (17364238) 14 November 2023 (has links)
<p dir="ltr">Originating from J. J. Thomsons original work and the development of electrospray ionization (ESI) by John B. Fenn, mass spectrometry offers a versatile analytical tool to measure beyond an ion’s m/z, especially for biomolecules. Gas-phase ion/ion reactions within a mass spectrometer offers an attractive approach to study biomolecules as they take place on the millisecond and sub millisecond time scale, have high efficiency, allow oppositely charged ions to interact with each other in a controlled manner, and a allows for selection of each reactant prior to the reaction via ion isolation. This can be used to probe gas-phase chemistry that can reflect reactions in solution, however gas-phase reactions have no solvent effects and happen faster, making it a simpler experiment. Here, a variety of gas-phase ion/ion reactions and ion trap methodologies are described to study mostly lipids with a minor amount of transmetalation at the beginning.</p><p dir="ltr">First, a series of multivalent metals complexed to neutral ligands are demonstrated to form ion-pairs with tetraphenylborate anions via ion/ion reactions. The resulting products were subjected to collision induced activation (CID) to observe their involvement in transmetalation, complementary density functional theory (DFT) calculations are provided as well. Next, sequential ion/ion reactions were performed to convert isomeric phosphoinositol phosphates dianions to monocations to reveal structural characterization and isomeric differentiation utilizing tandem MS and dissociation kinetics. The following two chapters after, reports on complementary efforts to separate lipids in the gas-phase of different mass and charge but similar mass-to-charge (m/z) resulting in overlapping m/z signals. The first report demonstrates a physical approach where singly and double charged lipids are separated in space from each other, trapped simultaneously such that no information is lost. The second utilizes a lanthanide, Yb3+ trication complex that underwent ion/ion reactions with singly and doubly charged lipid anions of similar m/z that result in different m/z products for each singly and doubly charged lipids. Lastly, a sequential ion/ion approach utilizing hexa(ethylene glycol) dithiol as a novel reagent to charge invert structurally uninformative lipid cations to structurally informative anions with subsequent carbon-carbon double bond localization.</p>
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Quantitative proteomics methods for the analysis of histone post-translational modificationsAbshiru, Nebiyu 09 1900 (has links)
Les histones sont des protéines nucléaires hautement conservées chez les cellules des eucaryotes. Elles permettent d’organiser et de compacter l’ADN sous la forme de nucléosomes, ceux-ci representant les sous unités de base de la chromatine. Les histones peuvent être modifiées par de nombreuses modifications post-traductionnelles (PTMs) telles que l’acétylation, la méthylation et la phosphorylation. Ces modifications jouent un rôle essentiel dans la réplication de l’ADN, la transcription et l’assemblage de la chromatine. L’abondance de ces modifications peut varier de facon significative lors du developpement des maladies incluant plusieurs types de cancer. Par exemple, la perte totale de la triméthylation sur H4K20 ainsi que l’acétylation sur H4K16 sont des marqueurs tumoraux spécifiques a certains types de cancer chez l’humain. Par conséquent, l’étude de ces modifications et des événements determinant la dynamique des leurs changements d’abondance sont des atouts importants pour mieux comprendre les fonctions cellulaires et moléculaires lors du développement de la maladie.
De manière générale, les modifications des histones sont étudiées par des approches biochimiques telles que les immuno-buvardage de type Western ou les méthodes d’immunoprécipitation de la chromatine (ChIP). Cependant, ces approches présentent plusieurs inconvénients telles que le manque de spécificité ou la disponibilité des anticorps, leur coût ou encore la difficulté de les produire et de les valider. Au cours des dernières décennies, la spectrométrie de masse (MS) s’est avérée être une méthode performante pour la caractérisation et la quantification des modifications d’histones. La MS offre de nombreux avantages par rapport aux techniques traditionnelles. Entre autre, elle permet d’effectuer des analyses reproductibles, spécifiques et facilite l’etude d’un large spectre de PTMs en une seule analyse. Dans cette thèse, nous présenterons le développement et l’application de nouveaux outils analytiques pour l’identification et à la quantification des PTMs modifiant les histones.
Dans un premier temps, une méthode a été développée pour mesurer les changements d’acétylation spécifiques à certains sites des histones. Cette méthode combine l’analyse des histones intactes et les méthodes de séquençage peptidique afin de déterminer les changements d’acétylation suite à la réaction in vitro par l’histone acétyltransférase (HAT) de levure Rtt109 en présence de ses chaperonnes (Asf1 ou Vps75).
Dans un second temps, nous avons développé une méthode d’analyse des peptides isomériques des histones. Cette méthode combine la LC-MS/MS à haute résolution et un nouvel outil informatique appelé Iso-PeptidAce qui permet de déconvoluer les spectres mixtes de peptides isomériques. Nous avons évalué Iso-PeptidAce avec un mélange de peptides synthétiques isomériques. Nous avons également validé les performances de cette approche avec des histones isolées de cellules humaines érythroleucémiques (K562) traitées avec des inhibiteurs d’histones désacétylases (HDACi) utilisés en clinique, et des histones de Saccharomyces cerevisiae liées au facteur d’assemblage de la chromatine (CAF-1) purifiées par chromatographie d’affinité. Enfin, en utilisant la méthode présentée précédemment, nous avons fait une analyse approfondie de la spécificité de plusieurs HATs et HDACs chez Schizosaccharomyces pombe. Nous avons donc déterminé les niveaux d’acétylation d’histones purifiées à partir de cellules contrôles ou de souches mutantes auxquelles il manque une HAT ou HDAC. Notre analyse nous a permis de valider plusieurs cibles connues des HATs et HDACs et d’en identifier de nouvelles. Nos données ont également permis de définir le rôle des différentes HATs et HDACs dans le maintien de l’équilibre d’acétylation des histones. Dans l’ensemble, nous anticipons que les méthodes décrites dans cette thèse permettront de résoudre certains défis rencontrés dans l’étude de la chromatine. De plus, ces données apportent de nouvelles connaissances pour l’élaboration d’études génétiques et biochimiques utilisant S. pombe. / Histones are highly conserved, basic proteins found in eukaryotic cell nuclei. They organize and package DNA strands into nucleosome core particles (NCPs), the fundamental repeating units of eukaryotic chromatin. The histones are subject to a wide variety of posttranslational modifications (PTMs) including acetylation, methylation and phosphorylation. These PTMs play an essential role in DNA-replication, transcription, and chromatin assembly. Alterations in histone PTM abundances have been implicated in several types of cancer. For example, the global loss of trimethylation at H4K20 and acetylation at H4K16 is a hallmark of human cancers. Thus, characterization of histone PTMs and their dynamics is extremely useful for elucidating normal cellular functions and molecular pathways that lead to diseases.
Traditionally, histone PTMs are analyzed using antibody-based approaches such as western blot and chromatin immunoprecipitation (ChIP) assays. These methods, however, suffer from several limitations including antibody cross-reactivity, epitope occlusion, and the cost and difficulty in producing and validating antibodies. Over the last decade, mass spectrometry (MS) has emerged as a powerful technique for the characterization and quantification of histone PTMs. MS offers several advantages over the traditional approaches including reproducibility, specificity, and ability to rapidly analyze numerous PTMs in a single experiment. In this thesis, the development and applications of novel analytical tools for the identification and quantification of histone PTMs are presented.
First, a method useful for measuring the global and site specific changes in histone acetylation is described. This method combines intact mass analysis and peptide sequencing approaches to study the global and site specific changes in histone acetylation during in vitro assays with yeast Rtt109 and its chaperone (Asf1 or Vps75). Second, a method for analysis of isomeric histone peptides is presented. This method combines a high resolution LC-MS/MS with a novel bioinformatics tool called Iso-PeptidAce to deconvolute mixed spectra of co-eluting isomeric peptides. We benchmarked Iso-PeptidAce using mixtures of synthetic isomeric peptides. We demonstrated its capability in histones isolated from human erythroleukemic (K562) cells treated with clinically relevant histone deacetylase inhibitors (HDACi) and in affinity-purified S. cerevisiae histones bound to chromatin assembly factor-1 (CAF-1). Third, by employing the above methods, an in-depth quantitative analysis of the substrate specificities of several fission yeast HATs and HDACs was assessed. We determined the acetylation site occupancy of multiple lysines in histones isolated from a control or mutant strains lacking specific HAT or HDAC activities. Our analysis identified several known and novel HAT and HDAC target sites. Our data also defined the division of labor between the different HATs and HDACs in maintaining the steady-state level of histone acetylation. Overall, we anticipate that the methods described in this thesis will address some of the existing challenges facing the chromatin field. Moreover, the data presented will provide valuable insights for future genetic and biochemical studies involving the fission yeast.
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Triaxialité et coexistence de forme dans les noyaux proches de la fermeture de couche N = 82 : évolution de forme et rotation magnétique dans ¹⁴¹Nd / Triaxiality and shape coexistence in nuclei near N=82 shell closure : shape evolution and magnetic rotation in ¹⁴¹NdZerrouki, Thileli 22 May 2015 (has links)
Ce travail de thèse a été consacré à l'étude des noyaux avec quelques trous dans la fermeture de couche N = 82, qui présente une très riche variété d'excitations à hauts spins. La particularité de ces noyaux est la présence de coexistence de forme (sphérique et/ou triaxiale) à des spins très élevés. Durant ma thèse, j’ai analysé une expérience effectuée avec le multidétecteur Euroball à l’IPHC (Strasbourg) pour l'étude des états de haut spin dans le noyau ¹⁴¹Nd, peuplé en utilisant la réaction de fusion-évaporation : ⁹⁶Zr (⁴⁸Ca, 3n). Nous avons identifié plusieurs bandes à spin élevé et développé le schéma de niveaux jusqu'à une énergie d'excitation et spin de l’ordre de 19 MeV et 81/2⁻ respectivement, qui sont bien plus élevés par rapport à celui publié précédemment (9.4 MeV et 49/2h). Trois nouvelles bandes dipôlaires et trois nouvelles bandes rotationnelles quadrupolaires ont été identifiées. La séquence principale yrast a aussi été étendue jusqu’au spin 61/2⁻.Nous avons réalisé des calculs théoriques détaillés des bandes observées, en intégrant, pour la première fois, les résultats qu’on a obtenus par les modèles Cranked Nilsson-Strutinsky (CNS) et Tilted Axis Cranking (TAC). Une interprétation cohérente de la plupart des bandes observées a été réalisée, qui semblent être basées sur des minimas d’énergies presque sphérique pour les séquences principales, légèrement déformée pour les bandes dipoalires et triaxiale déformée pour les bandes quadrupolaires. La structure de niveau observée dans le noyau ¹⁴¹Nd révèle la capacité des noyaux avec quelques trous dans la fermeture de couche N = 82 à acquérir des formes différentes de tourner autour d'un axe principal ou d'un axe incliné par rapport au système de référence intrinsèque, comme dans le cas des noyaux ¹³⁸Nd et ¹⁴⁰Nd récemment étudiés par notre groupe. Tous ces résultats représentent donc un fort soutien à l'existence de la forme nucléaire triaxiale stable à hauts spins dans cette région de masse. / This PhD work was devoted to the study of exotic nuclear rotation and stable triaxiality at very high spin. In, nuclei with a few holes in the N = 82 shell closure, which exhibit a large variety of excitations at medium and high spins. The peculiar feature of these nuclei is the existence of coexisting shapes, spherical and triaxial, up to very high spins.During my PhD I analyzed an experiment performed with the Euroball multidetector at IPHC (Strasbourg) for the study of high-spin states in ¹⁴¹Nd populated using the ⁹⁶Zr (⁴⁸Ca, 3n) fusion-evaporation reaction. We have identified several high-spin bands and developed the level scheme up to an excitation energy and spin of 19 MeV and 81/2⁻ , respectively, which are much higher than previously published (9.4 MeV and 49⁄2 ℏ). Three new dipole bands and three new ΔI = 2 rotational bands have been identified. The main yrast sequence was extended up to spin 61/2⁻.A detailed interpretation of the observed bands was performed, for the first time, using theoretical calculations with Cranked Nilsson-Strutinsky (CNS) and the Tilted Axis Cranking (TAC) models. A consistent interpretation of most of the observed bands was realized. They appear to be based on nearly spherical for the main sequence, slightly deformed for the dipole bands and triaxially deformed minima for the ΔI = 2 bands. The observed level structure of ¹⁴¹Nd reveals the capability of the nuclei with a few holes in the N = 82 shell closure to acquire different shapes and to rotate around a principal or a tilted axis relative to the intrinsic reference system, as in the case of the ¹³⁸Nd and ¹⁴⁰Nd nuclei recently studied by our group.
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Vida-média do estado isomérico 7(-) do núcleo ímpar-ímpar 68Ga / Lifetime of the 7(-) isomeric state of the odd-odd nucleus 68GaEscudeiro, Rafael 13 April 2018 (has links)
Estados Nucleares isoméricos são estados que decaem com vidas-médias longas ( T1/2 > 10 ns) e revelam, em geral, uma grande mudança no momento angular no seu decaimento, um pequeno elemento de matriz ou uma baixa energia de transição. Através da medida da vida-média de estados nucleares é possível obter informações sobre a função de onda desse estado, representando um teste rigoroso para modelos nucleares. Neste trabalho foi utilizado um sistema desenvolvido no Laboratório Aberto de Física Nuclear (LAFN) da Universidade de São Paulo chamado SIStema para Medida de Estados Isoméricos (SISMEI), que utiliza coincidência atrasada entre partículas evaporadas numa reação nuclear e raios gama emitidos pelo estado isomérico. O SISMEI consiste de cintiladores plásticos para detecção das partículas, detectores de germânio hiperpuro (HPGe) e iodeto de sódio (NaI(Tl)) para raios gama, associados a uma eletrônica de coincidência, instalado no acelerador Pelletron (8UD) do LAFN. Neste trabalho, realizou-se um experimento para medir o estado isomérico 7(-) (E = 1229,87(4) keV) do 68Ga. A tomada de dados durou cerca de 80 horas com uma taxa de eventos de aproximadamente 80000 contagens por hora. O resultado obtido foi T 1/2 = 60, 8(11) ns, que é compatível com os resultados experimentais de outros trabalhos, porém, mais preciso. A estrutura desse núcleo foi calculada através do Modelo de Camadas em Larga Escala considerando-se duas interações residuais diferentes FPG e JUN45; os resultados foram comparados entre si, juntamente com os valores obtidos em outros trabalhos. Os cálculos realizados com o Modelo de Camadas reproduziram relativamente bem a energia e a ordem dos estados excitados do 68Ga, a interação FPG conseguiu descrever melhor a probabilidade de transição quadrupolar elétrica B(E2) diretamente ligada à vida-média do estado. / Isomeric nuclear states are nuclear states which decay with long lifetimes (T1/2 > 10 ns); their study generally reveals, a large change in angular momentum in its decay, a small matrix element or a small transition energy. By measuring lifetimes of isomeric states it is possible to obtain information about this states wave function, being a robust test for nuclear models. In this work, a system developed at the Laboratório Aberto de Fsica Nuclear (LAFN) of University of São Paulo called System for the Measurement of Isomeric States (SISMEI) was utilized. Delayed coincidence between evaporated particles in a nuclear reaction and the delayed gamma-rays emitted from the isomeric state was used to measure lifetimes. SISMEI is composed of plastic scintillators for particle detection, hiperpure germanium detectors (HPGe) and sodium iodide (NaI(Tl)) for gamma-ray detection, coupled to a coincidence system, located on 30A beam line of the Pelletron (8UD) accelerator - LAFN. In the present work, an experiment to measure the 7 (-) (E = 1229.87(4) keV) isomeric state of 68Ga was performed. The experiment took about 80 hours with an event rate of about 80000 counts per second. The measured value was T 1/2 = 60.8(11) ns, which is compatible, but more accurate, with experimental results of other authors. The nuclear structure of this nucleus was calculated with the Large Scale Shell Model by using two different residual interactions FPG and JUN45; the results were compared with the known values. The structure calculated with LSSM described the energy states and the order of excited states relatively well; the FPG interaction was capable to describe better the quadrupolar electrical transition probability B(E2), which is direct related to predicting the state lifetime.
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Triaxialité et isomèrisme à hauts spins dans les noyaux proches de la fermeture de couche N = 82 / Triaxiality and seniority isomeric states in nuclei near the N = 82 shell closureLéguillon, Romain 17 October 2013 (has links)
L'existence de noyaux triaxiaux a fait l'objet d'un débat de longue date. La possibilité de la triaxialité mole et rigide a été proposée très tôt, et de nombreuses études théoriques et expérimentales ont été consacrées à ce phénomène intrigant. Plus récemment, deux marqueurs uniques de la triaxialité dans les noyaux ont été intensivement étudiés : le mouvement d'oscillation de l'axe de rotation (wobbling) et la chiralité dynamique. Ces types exotiques de mouvement ont été observées dans des régions spécifiques du tableau nucléaire : le mouvement d'oscillation dans les noyaux de Lu impair-pair avec A ~ 160, la chiralité principalement dans les noyaux impair-impair et pair-impair avec A ~ 130. Nous avons récemment étudié les noyaux de Nd à très hauts spins et identifié plusieurs bandes, qui ont été interprétées comme la manifestation de divers types de mouvement collectif : rotation suivant un axe incliné, rotation suivant les axes longs et courts, mouvement de wobbling et bandes chirales. Un autre phénomène révélé par nos résultats récents sur les noyaux de Nd avec seulement quelques trous neutroniques par rapport à la fermeture de couche N = 82, est la coexistence de forme. En effet, ces noyaux sont prévus pour avoir des isomères de hauts spins construis sur une forme sphérique, coexistant avec des bandes triaxiales, ou des formes très voire super-déformées . Ma thèse se compose de deux expériences. Tout d'abord, j'ai préparé, exécuté et analysé une expérience réalisée au « Research Center of Nuclear Physics » (RCNP) de l' Université d'Osaka . Cette expérience visait à étudier les isomères de hauts spins et à développer les schémas de niveaux des noyaux de 135La, 136La et 136Ba. Nous avons utilisé un faisceau radioactif de 17N de 80 MeV créé par la réaction directe de 18O sur une cible 9Be et sélectionné à l'aide d'un spectromètre achromatique. Le faisceau radioactif de 17N bombardait une cible de 124Sn de 20 mg/cm2 d'épaisseur pour produire les noyaux d'intérêt par une réaction de fusion-évaporation. Cette thèse présente les résultats obtenus pour le 135La, qui comprennent la construction et la discussion du schéma de niveau et la mesure de la durée de vie de deux isomères connus. La deuxième partie de la thèse consiste en l'analyse de deux expériences différentes réalisée en utilisant la même combinaison de faisceau-cible 48Ca + 96Zr à une énergie légèrement différentes et deux dispositifs expérimentaux différents, EUROBALL et JUROGAM II + RITU + GREAT, pour étudier les isotopes du néodyme de 138Nd à 141Nd. Mon travail a été axé sur les noyaux pair-pair de 138Nd et 140Nd, avec un accent particulier sur le 140Nd. La multitude de bandes de spin élevé observées dans ce noyau sont discutées dans le cadre du modèle « Cranked Nilsson - Strutinsky » (CNS) et du modèle « Tilted Axis Cranking » (TAC). Les bandes de hauts spins observées dans les noyaux de 138-141Nd sont toutes interprétées comme basées sur un minimum d'énergie associé à une déformation triaxiale. Elles représentent donc un fort soutien à l'existence de la forme nucléaire triaxiale stable à hauts spins. L'isomère de haut spin 27– a également été identifié dans le 140Nd qui, combinée avec l'isomère 20+ précédemment connu dans le même noyau va permettre d'extraire pour la première fois une valeur expérimentale de la différence d'énergie entre les orbitales πh11/2 et π(d5/2g7/2) à hauts spins. / The existence of triaxial nuclei has been the subject of a long standing debate. The possibility of soft and rigid triaxiality has been proposed very early, and many theoretical and experimental studies have been devoted to this intriguing phenomenon since then. More recently two unique fingerprints of triaxiality in nuclei have been intensively studied : the wobbling motion and the dynamic chirality. These exotic types of motion were observed in specific regions of the nuclear chart : the wobbling motion in the odd-even Lu nuclei with A ∼ 160, the chirality primarily in the odd-odd and odd-even nuclei with A ∼ 130 nuclei. We have recently studied the Nd nuclei up to very high spins and identified several bands, which were interpreted as the manifestation of various types of collective motion : tilted axis rotation, principal axis rotation along the short and long axes, wobbling motion and chiral bands. Another phenomenon revealed by our recent results on the Nd nuclei with neutron numbers just below the N=82 shell closure, is the shape coexistence. In fact, these nuclei are predicted to have high-spin seniority isomers built on a spherical shape, coexisting with bands built on either triaxial, highly or even superdeformed shapes.My PhD consists of two experiments. Firstly I have prepared, performed and analysed an experiment realized at the Research Center of Nuclear Physics (RCNP) of the Osaka University. This experiment was performed to study the isomeric states and to develop the level schemes of the 135La, 136La and 136Ba nuclei. We have used a radioactive 17N beam of 80 MeV created by the stripping reaction of 18O on a 9Be target and selected using an achromatic spectrometer. The 17N radioactive beam bombarded a 20 mg/cm2 124Sn target to produce the nuclei of interest by a fusion-evaporation reaction. The present thesis presents the results obtained for 135La, which include the construction and discussion of the level scheme and the measurement of the lifetime of two known isomers. The second part of the thesis consists in the analysis of two different experiments performed using the same beam-target combination 48Ca + 96Zr at slightly different beam energies and two different settups, EUROBALL and JUROGAM II + RITU + GREAT, to study the neodymium isotopes from 138Nd to 141Nd. My work was focused on the even-even 138Nd and 140Nd nuclei, with special emphasis on 140Nd, which is discussed in the present thesis. The multitude of high-spin bands observed in this nucleus are discussed in the framework of Cranked Nilsson-Strutinsky (CNS) and Tilted Axis Cranking (TAC) models. The observed high-spin bands in 138−141Nd which are consistently interpreted as based on an energy minimum at triaxial deformation, represent a strong support for the existence of stable triaxial nuclear shapes at high spins. A 27– high-spin isomer has also been identified in 140Nd, which combined with the previous known 20+ isomer in the same nucleus allow to extract for the first time an experimental value for the energy difference between the πh11/2 and π(d5/2g7/2) orbitals at high spins.
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Vida-média do estado isomérico 7(-) do núcleo ímpar-ímpar 68Ga / Lifetime of the 7(-) isomeric state of the odd-odd nucleus 68GaRafael Escudeiro 13 April 2018 (has links)
Estados Nucleares isoméricos são estados que decaem com vidas-médias longas ( T1/2 > 10 ns) e revelam, em geral, uma grande mudança no momento angular no seu decaimento, um pequeno elemento de matriz ou uma baixa energia de transição. Através da medida da vida-média de estados nucleares é possível obter informações sobre a função de onda desse estado, representando um teste rigoroso para modelos nucleares. Neste trabalho foi utilizado um sistema desenvolvido no Laboratório Aberto de Física Nuclear (LAFN) da Universidade de São Paulo chamado SIStema para Medida de Estados Isoméricos (SISMEI), que utiliza coincidência atrasada entre partículas evaporadas numa reação nuclear e raios gama emitidos pelo estado isomérico. O SISMEI consiste de cintiladores plásticos para detecção das partículas, detectores de germânio hiperpuro (HPGe) e iodeto de sódio (NaI(Tl)) para raios gama, associados a uma eletrônica de coincidência, instalado no acelerador Pelletron (8UD) do LAFN. Neste trabalho, realizou-se um experimento para medir o estado isomérico 7(-) (E = 1229,87(4) keV) do 68Ga. A tomada de dados durou cerca de 80 horas com uma taxa de eventos de aproximadamente 80000 contagens por hora. O resultado obtido foi T 1/2 = 60, 8(11) ns, que é compatível com os resultados experimentais de outros trabalhos, porém, mais preciso. A estrutura desse núcleo foi calculada através do Modelo de Camadas em Larga Escala considerando-se duas interações residuais diferentes FPG e JUN45; os resultados foram comparados entre si, juntamente com os valores obtidos em outros trabalhos. Os cálculos realizados com o Modelo de Camadas reproduziram relativamente bem a energia e a ordem dos estados excitados do 68Ga, a interação FPG conseguiu descrever melhor a probabilidade de transição quadrupolar elétrica B(E2) diretamente ligada à vida-média do estado. / Isomeric nuclear states are nuclear states which decay with long lifetimes (T1/2 > 10 ns); their study generally reveals, a large change in angular momentum in its decay, a small matrix element or a small transition energy. By measuring lifetimes of isomeric states it is possible to obtain information about this states wave function, being a robust test for nuclear models. In this work, a system developed at the Laboratório Aberto de Fsica Nuclear (LAFN) of University of São Paulo called System for the Measurement of Isomeric States (SISMEI) was utilized. Delayed coincidence between evaporated particles in a nuclear reaction and the delayed gamma-rays emitted from the isomeric state was used to measure lifetimes. SISMEI is composed of plastic scintillators for particle detection, hiperpure germanium detectors (HPGe) and sodium iodide (NaI(Tl)) for gamma-ray detection, coupled to a coincidence system, located on 30A beam line of the Pelletron (8UD) accelerator - LAFN. In the present work, an experiment to measure the 7 (-) (E = 1229.87(4) keV) isomeric state of 68Ga was performed. The experiment took about 80 hours with an event rate of about 80000 counts per second. The measured value was T 1/2 = 60.8(11) ns, which is compatible, but more accurate, with experimental results of other authors. The nuclear structure of this nucleus was calculated with the Large Scale Shell Model by using two different residual interactions FPG and JUN45; the results were compared with the known values. The structure calculated with LSSM described the energy states and the order of excited states relatively well; the FPG interaction was capable to describe better the quadrupolar electrical transition probability B(E2), which is direct related to predicting the state lifetime.
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Différents aspects de la physique nucléaire depuis les basses énergies jusqu'aux énergies intermédiaires / Different aspects of nuclear physics from low energies up to intermediate energiesLallouet, Yoann 19 December 2011 (has links)
Cette thèse porte sur l'étude de différents aspects de la physique nucléaire depuis les basses énergies jusqu'aux énergies intermédiaires. Pour les basses énergies, où la matière nucléaire est essentiellement constituée de nucléons en interaction, la partie I traite de la fusion-fission des noyaux super-lourds, et la partie II des règles de somme associées aux interactions de type Skyrme. Pour les énergies intermédiaires, la matière nucléaire étant alors considérée comme une phase hadronique principalement constituée de pions, la partie III se focalise sur l'hydrodynamique relativiste de la matière nucléaire avec brisure spontanée de symétrie chirale. Dans la partie I, on s'intéresse à la formation puis à la désexcitation des noyaux super-lourds. On étudie donc la formation du noyau composé avec effets de mémoire. Pour la désexcitation d'un noyau super-lourd, l'existence d'un puits isomérique dans la barrière de potentiel change la dynamique de désexcitation et augmente les temps de fission. Cette dernière étude pourrait être utile à l'étude de la dynamique de la fission des actinides. Dans la partie II, les règles de somme M1 et M3 associées aux potentiels phénoménologiques de type Skyrme sont calculées à partir de leurs définitions intrinsèques. On détermine alors M1 jusqu'au niveau tensoriel et M3 avec potentiel central. Dans la partie III, pour le traitement hydrodynamique de la matière hadronique appliqué aux collisions d'ions lourds on peut, en première approximation, écarter les modifications induites par la brisure spontanée de symétrie chirale mais pas celles dues à l'aspect dissipatif. / This study focuses on different aspects of nuclear physics from low energies to intermediate ones. For the low energies, the nuclear matter is essentially constituted from interacting nucleons. Part I is on the fusion-fission of super-heavy elements, while Part II is on the Skyrme interactions-associated sum rules. In the case of the intermediate energies, where the nuclear matter is considered as being an hadronic phase mainly constituted from pions, Part III is focused on nuclear matter relativistic hydrodynamics with spontaneous chiral symmetry breaking. In Part I, the formation and the desexcitation of super-heavy nuclei are being studied. We analyzed the formation of compound nuclei including the memory effects. For super-heavy nuclei desexcitation, the existence of isomeric state within the potential barrier modifies the desexcitation dynamics and increases the fission time. This latter study could be useful for the study of the actinides fission. In Part II, the phenomenological Skyrme effective interactions- associated M1 and M3 sum rules are being calculated based on their intrinsic definitions. We identify then M1 up to the tensorial level and M3 with central potential. In Part III, as for the hadronic matter hydrodynamics being applied to heavy ions collisions, and as a first approach only, we can neglect spontaneous chiral symmetry but certainly not the dissipative impact.
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