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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.
471

The Central regions of early-type galaxies in nearby clusters

Glass, Lisa Anne 28 August 2012 (has links)
Remarkably, the central regions of galaxies are very important in shaping and influencing galaxies as a whole. As such, galaxy cores can be used for classification, to determine which processes may be important in galaxy formation and evolution. Past studies, for example, have found a dichotomy in the inner slopes of early-type galaxy surface brightness profiles. Using deprojections of the galaxies from the ACS Virgo and Fornax Cluster Surveys (ACSVCS/FCS), we show that, in fact, this dichotomy does not exist. Instead, we demonstrate that the brightest early-type galaxies tend to have central light deficits, a trend which gradually transitions to central light excesses – also known as compact stellar nuclei – as we go to fainter galaxies. This effect is quantified, and can be used to determine what evolutionary factors are important as we move along the galaxy luminosity function. The number of stellar nuclei that we observe is, in fact, an unexpected result emerging from the ACSVCS/FCS. Being three times more common than previously thought, they are present in the vast majority of intermediate and low-luminosity galaxies. Conversely, it has been known for over a decade that there is likely a supermassive black hole weighing millions to billions of solar masses at the center of virtually every galaxy of sufficient size. These black holes are known to follow scaling relations with their host galaxies. Using the ACSVCS, along with new kinematical data from long-slit spectroscopy, we measure the dynamical masses of 83 galaxies, and show that supermassive black holes and nuclei appear to fall along the same scaling relation with host mass. Both represent approximately 0.2% of their host’s mass, implying an important link between the two types of central massive objects. Finally, we extract elliptical isophotes and fit parameterized models to the surface brightness profiles of new Hubble Space Telescope imaging of the ACSVCS galaxies, observed in infrared and ultraviolet bandpasses. Taken together, the two surveys represent an unprecedented collection of isophotal and structural parameters of early-type galaxies, and will allow us to learn a great deal about the stellar populations and formation histories of galaxy cores. / Graduate
472

Extended defects in curved spacetimes

Bonjour, Filipe January 1999 (has links)
This Thesis is concerned with three particular aspects of extended cosmic strings and domain walls in cosmology: their dynamics, gravitation and interaction with a black hole. In Chapter 3, we study the dynamics of an abelian-Higgs cosmic string. We find its equations of motion from an effective action and compare, for three test trajectories, the resulting motion with that observed in the Nambu-Gotō approximation. We also present a general argument showing that the corrected motion of any string is generically antirigid. We pursue the investigation of the dynamics of topological defects in Chapter 5, where we find (from integrability conditions rather than an effective action) the effective equations governing the motion of a gravitating curved domain wall. In Chapter 4 we investigate the spacetime of a gravitating domain wall in a theory with a general potential V(ɸ). We show that, depending on the gravitational coupling e of the scalar ɸ, all nontrivial solutions fall into two categories interpretable as describing respectively domain wall and false vacuum-de Sitter solutions. Wall solutions cannot exist beyond a value (^4)(_3)ɛmax, and vacuum-de Sitter solutions are unstable to decaying into wall solutions below ɛmax at ɛmax we observe a phase transition between the two types of solution. We finally specialize for the Goldstone and sine-Gordon potentials. In Chapter 6 we consider a Nielsen-Olesen vortex whose axis passes through the centre of an extremal Reissner-Nordstr0m black hole. We examine in particular the existence of piercing and expelled solutions (where the string respectively does and does not penetrate the black hole's horizon) and determine that while thin strings penetrate the horizon — and therefore can be genuinely called hair — thick strings are expelled; the two kinds of solution are separated by a phase transition.
473

Calculation of Physical Processes at the LHC

Al-Binni, Usama Adnan 01 December 2011 (has links)
With the start of the age of the Large Hadron Collider (LHC) two challenges face theoreticians and computational physicists. The first is about understanding theories beyond the Standard Model and producing verifiable predictions that can be tested against what the LHC and subsequent machines would produce. The second is to improve computational methods so that the new experimental precision is matched by a theoretical one. But this improvement is also crucial for the detection of potential deviations from Standard Model predictions and possibly also finding the elusive Higgs. This work tries to address problems in both areas. In the first part we study the effects of adding tension in considering a black-hole on a brane. Such black-holes are predicted by some models as potential phenomena at the LHC. We calculate the effects of adding tension on observable quantities of black-holes, namely, quasinormal mode frequencies and Hawking radiation, and we show how this improves predictions. In the second part we investigate the computational problem of extending the Britto-Cachazo-Feng-Witten (BCFW) method to 1-loop level. The BCFW has been successfully used in recent years to compute scattering amplitudes at tree-level by suitably complex-shifting external momenta and reducing diagrams to simpler ones. In our investigation we establish that the BCFW can be extended to 1-loop, which means that 1-loop integrands can be treated as trees and can be broken down further into even simpler trees using the BCFW. We explicitly look at the effects of the shift for the lowest three n-point cases, but also demonstrate how the result extends to arbitrary n.
474

The fuzzy horizon

Murugan, Anand January 2007 (has links)
The fuzzball model of a black hole is an attempt to resolve the many paradoxes and puzzles of black hole physics that have revealed themselves over the last century. These badly behaved solutions of general relativity have given physicists one of the few laboratories to test candidate quantum theories of gravity. Though little is known about exactly what lies beyond the event horizon, and what the ultimate fate of matter that falls in to a black hole is, we know a few intriguing and elegant semi-classical results that have kept physicists occupied. Among these are the known black hole entropy and the Hawking radiation process.
475

Constraining the high energy emission sources in the environment of supermassive black holes / L'origine de l'émission électromagnétique de haute énergie dans l'environnement des trous noirs supermassifs

Ursini, Francesco 28 October 2016 (has links)
Des trous noirs supermassifs de plusieurs centaines de millions de masses solaires résident au centre de la plupart des galaxies massives. Dans 90% des cas, ces trous noirs sont dans état quiescent, très peu lumineux. Cependant, dans les 10% restant, des processus extrêmement violents sont observés, avec la libération d'énorme quantités d'énergie no- tamment en UV, X et gamma. On observe aussi parfois des jets puissants de matière pouvant s'étendre sur plusieurs centaines de kpc. Le coeur de ces galaxies sont appelés Noyaux Actifs de Galaxie (NAG). Ce sont parmis les objets les plus lumineux de l'univers. L'accrétion de la matière environnante sur le trou noir supermassif central est unanimement reconnue comme la source d'énergie la plus plausible pour expliquer la puissance phénoménale observée. L'énergie gravitationelle serait ainsi en partie libérée dans un disque d'accrétion, sous forme de rayonnement thermique piquant dans l'optique/UV, et en partie rayonnée en X/gamma par une couronne de plasma chaud présente dans l'environnement proche du trou noir.De nombreux phénomènes sont néanmoins encore très mal connus et beaucoup de ques- tions n'ont toujours pas de réponses satisfaisantes: quelles sont la dynamique et la structure des flots d'accrétion et d'éjection dans les NAG? Quels sont les processus radiatifs produisant le rayonnement UV/X? Quelle est l'origine des différentes composantes spectrales présentes dans ces domaines d'énergie? Cette thèse a pour objectif d'apporter de nouvelles contraintes observationnelles pour meux répondre à ces questions. Son originalité réside dans le développement et l'utilisation de modèles réalistes de Comptonisation thermique permettant d'une part de mieux contraindre les propriétés physiques et géométriques des régions d'émission UV/X et d'autre part de mieux comprendre l'origine des différentes composantes spectrales observées. Nous nous sommes notamment intéressés, au cours de cette thèse, à l'excès d'émission X-mou (<2 keV), présent dans un grand nombre de NAG, et dont l'origine est toujours inconnue.Ces travaux s'articulent autour de deux axes principaux. Le premier est l'étude spectrale détaillée de longues campagnes d'observation multi-longueur d'ondes de trois galaxies de Seyfert (NGC 5548, NGC 7213 et NGC 4593). La qualité des données ont ainsi permis de révéler les paramètres physiques (notamment la température et la profondeur optique) et géométriques de la couronne thermique à l'origine du continuum X. Le second axe porte sur l'analyse de données d'archives (en provenance du satellite XMM-Newton) d'un échantillon important de galaxies de Seyfert. Cela a permis d'apporter, cette fois ci, des contraintes plus générales sur les processus d'émission haute énergie observés dans ces objets. Ces deux approches ont notamment montré que l'exces d'émission X-mou pouvait provenir des couches supérieures chaudes du disque d'accrétion, suggérant un chauffage plus efficace en surface plutôt que dans les régions internes. / Supermassive black holes of several hundred million solar masses lie at the centre of most massive galaxies. In 90% of cases, these black holes are in quiescent, very low luminous states. Nevertheless, in the remaining 10%, extremely violent processes are seen, with the liberation of huge amounts of energy especially in the UV, X-ray and gamma-ray bands. We also sometimes observe powerful jets, extending up to several hundred kpc scales. The cores of these galaxies are called Active Galactic Nuclei (AGNs). These are among the most luminous objects in the Universe. The accretion of surrounding matter onto the central supermassive black hole is generally considered as the most likely energy source to explain the extraordinary observed luminosity. The gravitational energy would be partly liberated into an accretion disc as thermal radiation peaking in the optical/UV band, and partly radiated in the X-ray/gamma-ray band by a corona of hot plasma lying in the environment close to the black hole.However, several phenomena are still poorly understood and a number of questions lacks satisfactory answers: what are the dynamics and the structure of the accretion and ejection flows in AGNs? What are the radiative processes producing the UV/X-ray radiation? What is the origin of the different spectral components present in those energy bands? The goal of this thesis is to derive new observational constraints to better answer to these questions. Its originality resides in the development and application of realistic models of thermal Comptonization, allowing on the one hand to better constrain the physical and geometrical properties of the UV and X-ray-emitting regions, and on the other hand to better understand the origin of the different observed spectral components. In particular, we studied the excess of the soft (<2 keV) X-ray emission, seen in a great number of AGNs, and whose origin is still unknown.This work is structured along two main branches. One is the detailed spectral analysis of long, multiwavelength observational campaigns on three Seyfert galaxies (NGC 5548, NGC 7213 and NGC 4593). The quality of the data permitted to reveal the geometrical and physical parameters (in particular the temperature and optical depth) of the thermal corona producing the X-ray continuum. The second branch is based on the analysis of archival data (from the XMM-newton satellite) of a large sample of Seyfert galaxies. This allowed us to derive more general constraints on the high-energy emission processes observed in these objects. These two approaches have shown, in particular, that the soft X-ray emission excess may arise in the warm upper layers of the accretion disc, suggesting a more effective heating of the surface rather than the inner regions.
476

Au-delà de la relativité générale : certains aspects de la cosmologie quantique à boucles, des trous noirs et de l'univers sombre / Beyond Einstein’s theory of gravitation : some aspects of loop quantum cosmology, black holes and the dark universe

Bolliet, Boris 24 July 2017 (has links)
Dans cette thèse, nous explorons la phénoménologie de certaines extensions de la relativité générale et de la gravité quantique.Cette recherche est motivée par l’incomplétude des modèles théoriques qui décrivent le comportement de la matière aux échelles cosmologiques.Le model standard de la physique des particules et la relativité générale, combinés ensemble et avec les données expérimentales provenant des collisionneurs de particules et de l’astrophysique, conduisent a des modèles d’univers domines par de la matière invisible. De plus, selon le meilleur de ces modèles, l’univers serait présentement dans une phase d’expansion accélérée et aurait commencer son existence par une singularité spatio-temporelle : le big bang.Ainsi, la physique théorique se trouve mise au défi d’obtenir un model sans singularités et avec moins (ou aucune) matière sombre. Sur ce point, les deux dernières décennies ont étés particulièrement fructueuse : il y a maintenant un grand nombre de théories de gravité modifiée, d’énergie sombre et de gravité quantique qui sont à notre disposition.L’objectif du présent travail est de construire un cadre phénoménologique nous permettant de comparer clairement ces théories les unes aux autres et possiblement d’en réfuter certaines en se basant sur les récentes observations cosmologiques ainsi que celles qui sont encore a venir.La première partie de la thèse est dédiée aux théories de gravité modifiée et d’énergie sombre. La deuxième partie traite de la cosmologie quantique a boucles, et finalement la dernière partie présente une nouvelle façon de sonder l’expansion accélérée de l’univers via l’effet Sunyeav Zeldovich thermique. / In this thesis we explore the phenomenology of some extensions to General Relativity and quantum gravity theories.The motivation for this research lies in the incompleteness of the current theoretical models that describe the behaviour of matter on cosmological scales.The standard model of particle physics and general relativity, combined together along with experimental probes in particle colliders and astrophysics, lead to a model for our universe, which is today dominated by dark matter. Moreover, according to the best model, the universe is currently undergoing an accelerated expansion and had started its existence with a space-time singularity: the big bang.The challenge for theoretical physics is therefore to obtain a model without singularity and with less invisible matter (or none). To this respect, the last two decades have been particularly fruitful: there is a large number of competing modified gravity and dark energy theories as well as quantum gravity proposals at our disposal.The purpose of the work presented here is to set up a phenomenological framework that enables a clear comparison and possible exclusions of these new theories by confronting them to current and future observational data.The first part of the thesis is dedicated to modified gravity and dark energy models. The second part deals with loop quantum cosmology, and the last part is a presentation of a new probe for dark energy: the thermal Sunyaev Zeldovich power spectrum.
477

Optimização das operações de desmonte de rocha com uso de explosivos em câmaras transversais (sublevel stoping)

Bundrich, Lauro Augusto January 2017 (has links)
O desmonte de rocha com uso de explosivos, aplicado à extração subterrânea de recursos minerais é uma tarefa impar que exige perícia e planejamento detalhado. Nesse contexto, essa dissertação tem sua relevância devido à apresentação de metodologias que visam aprimorar os processos envolvidos com o desmonte de rocha com uso de perfurações radiais, aplicado ao método de mineração subterrânea câmaras transversais, variante do método sublevel stoping. Para cumprir esse objetivo foram estabelecidas metodologias embasadas na utilização de registros sismográficos dos desmontes, mapeamento por laser das câmaras de lavra, registros operacionais da mina estudada. As metodologias aplicadas nas operações de mina incluíram: a segregação entre as atividades de perfuração e desmonte de rocha para assim aprimorar o ciclo operacional, a implantação de desmontes massivos como forma de aumentar a taxa de produção. A mudança na geometria das câmaras, a fim preservar o teto das mesmas. Um experimento com diferentes arranjos de retardo nos desmontes, como forma de determinar a configuração temporal menos nociva em termos de vibração, e por fim, a aplicação de uma nova malha de perfuração baseada no método dos triângulos reorientados de Hagan (1988), que visava diminuir a necessidade de perfuração e melhorar a distribuição energética dos desmontes em leque. As modificações propostas geraram resultados positivos, respectivamente quanto: aumento da eficiência dos ciclos de perfuração em 49% e aumento de 54% na produtividade das câmaras no período estudado, devido a implementação de desmontes massivos somados a segregação das atividades de perfuração e desmonte. Observou se a diminuição significativa da sobre-quebra (back break) do teto, da mesma forma os danos aos cabos de ancoragem (cable-bolts) foram reduzidos, resultados estes oriundos das modificações na geometria das câmaras. Os testes com diferentes arranjos de retardos demonstraram que o arranjo: 50ms entre furos e 200ms entre linhas, gerou a menor intensidade de vibração. O teste com o padrão de perfuração baseado na técnica de Hagan apresentou melhor índice de perfuração específica, porém, resultou em uma recuperação menor do que a média usual das câmaras, (76% contra 85%). Pode-se concluir que as metodologias propostas foram validas como medidas de aprimoramento das operações de perfuração e desmonte de rocha, a exceção da técnica dos triângulos reorientados de Hagan. Também foi possível concluir que a razão entre os valores de retardos intra linhas (L-L) e intra furos (F-F) influi diretamente na intensidade de vibração. / The blasting of rocks, applied to the underground extraction of mineral resources is a difficult task that requires expertise and detailed planning. In this context, this dissertation has its relevance due to the presentation of methodologies that aim to improve the processes involved with the blasting of rocks utilizing ring drilling, applied to the underground mining method transversal stopes, a variant of the method sublevel stoping. To fulfill this objective, methodologies based on the use of seismographic records of the blasting events, laser scanners of the stopes and operational records of the mine were used, as well as the use of Micromine software. The methodologies applied in mine operations included: segregation between rock drilling and blasting activities to improve the operational cycle, the implantation of the concept of mass blasting as a way to increase the production rate, the change in the drilling pattern in order to preserve the roof of the stopes, an experiment with different arrangements of delays for the blasting, as a way to determine the less harmful configuration in terms of vibration and finally the application of a new drilling pattern based on the reoriented triangles method of Hagan (1988), which aimed to reduce the need for drilling and to improve the energy distribution of the rings of drilling. The proposed modifications generated positive results, respectively: increase in the efficiency of the drilling cycles by 49% and a 54% increase in the productivity of the studied period, due to the implementation of mass blasting concept added to the segregation of drilling and blasting activities. It was observed that the significant decrease of the back break of the roof, in the same way the damages to the cables of reinforcement (cable-bolts) were reduced, as a result from the modifications in the drillings. The tests with different delay arrangements showed that the arrangement: 50ms between holes and 200ms between rows, generated the lowest vibration intensity. The Hagan technique-based drilling test showed a better specific drilling index, but resulted in a lower ore recovery than the usual to the stopes mean (76% vs. 85%). It can be concluded that the proposed methodologies were valid as measures of improvement of the operations of drilling and blasting of rock, except for the technique of the reoriented triangles of Hagan. It was also possible to conclude that the ratio between inter ring and inter-hole delays directly influences the vibration intensity.
478

Complementaridade de buracos negros e a conexão entre emaranhamento e geometria.

VELOSO, Ildemar Barreto. 17 October 2018 (has links)
Submitted by Emanuel Varela Cardoso (emanuel.varela@ufcg.edu.br) on 2018-10-17T17:33:09Z No. of bitstreams: 1 Dissertação-Ildemar Barreto Veloso -(OK).pdf: 627444 bytes, checksum: ba9ac192a954812365d05a8c75c86647 (MD5) / Made available in DSpace on 2018-10-17T17:33:09Z (GMT). No. of bitstreams: 1 Dissertação-Ildemar Barreto Veloso -(OK).pdf: 627444 bytes, checksum: ba9ac192a954812365d05a8c75c86647 (MD5) Previous issue date: 2016-09 / Capes / A Relatividade Geral, que foi construída baseada nos princípios da equivalência e da covariância,é a teoria da gravitação que admite um espaço-tempo não euclidiano. Ela permite que o espaço-tempo se torne curvo próximo à distribuições de matéria. Os buracos negros são objetos com imensas concentrações de matéria, que provocam grandes perturbações no espaço a sua volta. A métrica correspondente ao buraco negro que analisamos foi a de Schwarzschild. Tais objetos também podem ser analisados utilizando-se a termodinâmica, com a obtenção de variáveis como temperatura e entropia. Este último conceito, é de fundamental importância para entendermos a questão do emaranhamento entre dois sistemas físicos correlacionados e a teoria de informação. Assim, nosso objetivo foi analisar alguns fatores sobre o paradoxo da conservação da informação em buracos negros. Além do mais, também analisamos como o emaranhamento entre duas regiões desconectadas pode gerar espaços-tempos conectados, e qual sua relação com as pontes deEinstein-Rosen. / The General Relativity, that was built on the equivalence and covariance principles, is the gravitation the or which admits an on-euclide an space time. It permits that the space time be comes curve near matter distributions. The black holes are objects with huge concentrations of matter, which cause major disruption in the space around it.The corresponding metric to the black hole that were view edit is the Schwarzschildmetric. Such objects canal sobe analyzed using the thermo dynamic concepts, to obtain variables such as temperature and entropy. This one, will be of fundamental importance to understanding the question of the entanglement between two related physical systems and the concept of information. So, ourgo alitis to examine some factors aboutt he information conservation paradox in black holes. Moreover, also we analyzedas a entan- glement between two disconnected regions can generate space time connected,and what is its relationship with Einstein-Rosenbridges.
479

Métricas críticas do funcional volume e não-existência de múltiplos buracos negros em espaço-tempo estático / Critical metrics of the functional volume and non-existence of multiple black holes in static space-time

Baltazar, Halyson Irene 05 July 2017 (has links)
BALTAZAR, H. I. Métricas críticas do funcional volume e não-existência de múltiplos buracos negros em espaço-tempo estático. 2017. 67 f. Tese (Doutorado em Matemática) – Centro de Ciências, Universidade Federal do Ceará, Fortaleza, 2017. / Submitted by Andrea Dantas (pgmat@mat.ufc.br) on 2017-07-12T19:24:59Z No. of bitstreams: 1 2017_tese_hibaltazar.pdf: 449308 bytes, checksum: a4275b6fceeb5cb76fe217e956f933cd (MD5) / Approved for entry into archive by Rocilda Sales (rocilda@ufc.br) on 2017-07-13T12:17:45Z (GMT) No. of bitstreams: 1 2017_tese_hibaltazar.pdf: 449308 bytes, checksum: a4275b6fceeb5cb76fe217e956f933cd (MD5) / Made available in DSpace on 2017-07-13T12:17:46Z (GMT). No. of bitstreams: 1 2017_tese_hibaltazar.pdf: 449308 bytes, checksum: a4275b6fceeb5cb76fe217e956f933cd (MD5) Previous issue date: 2017-07-05 / This work is divided in two parts. In the first one we prove a Böchner type formula for critical metrics of the volume functional on compact manifolds with fixed metric on boundary (such critical metrics are called Miao-Tam critical metrics). As an application, we derive an integral formula that will be crucial to deduce a generalization of a result obtained by Miao and Tam in 2011 for the Einstein case. More precisely, we prove that a Miao-Tam critical metric with parallel Ricci curvature must be isometric to a geodesic ball in a simply connected space form Rn, Sn or Hn. Furthermore, in dimension 3, we prove that critical metrics with non-negative sectional curvature are precisely geodesic balls of R3 or S3. Moreover, we generalize a result due to Kim and Shin (2016), replacing the harmonic Weyl tensor condition by the second order divergence free Weyl tensor condition (i.e., div2W = 0), which is weaker that the former. To be precise, we shall show that a 4-dimensional Miao-Tam critical metric, with boundary isometric to a standard sphere S3 and satisfying div2W = 0 is isometric to a geodesic ball in a simply connected space form R4, S4 or H4. At the same time, we get some rigidity results for positive static triples. In the second part, we study static vacuum space-times, which can be seen as a special case of the V-static metrics for complete Riemannian manifolds with null scalar curvature. In this case, we focus our attention on four dimensions. We prove that there are no multiple black holes on static vacuum space-times with half harmonic Weyl tensor (i.e., divW+ = 0). / Esse trabalho está dividido em duas partes. A primeira delas está relacionada ao estudo de fórmulas tipo-Böchner para métricas críticas do funcional volume em variedades compactas com métrica fixada no bordo (estas são conhecidas como métricas críticas de Miao-Tam). Como aplicação, estabeleceremos uma fórmula integral que permitirá generalizar o resultado obtido por Miao e Tam em 2011 para o caso Einstein, mais precisamente, provaremos que métricas críticas de Miao-Tam com curvatura de Ricci paralelo são isométricas às bolas geodésicas em um espaço forma simplesmente conexo Rn, Sn ou Hn. Se nos restringirmos às variedades com dimensão 3, veremos que tais estruturas se mostram ainda mais rígidas, a saber, provaremos que métricas críticas com curvatura seccional não-negativa são precisamente as bolas geodésicas de R3 ou S3. Além disso, generalizamos o resultado obtido por Kim e Shin (2016) substituindo condição de harmonicidade do tensor de Weyl pela hipótese que o tensor de Weyl tem divergente de segunda ordem nulo (i.e., div2W = 0). Mais precisamente, mostraremos que métricas críticas de Miao-Tam em dimensão 4, com bordo isométrico a esfera S3 e satisfazendo div2W = 0, são isométricas às bolas geodésicas em um espaço forma simplesmente conexo R4, S4 ou H4. Concomitantemente, obtemos resultados de rigidez para triplas estáticas positivas. Na segunda parte do trabalho, estudaremos o espaço-tempo estático no vácuo, o qual pode ser visto como um caso especial das mátricas V-estáticas para variedades completas com curvatura escalar nula. Neste caso, restringiremos nosso estudo a quarta dimensão e provaremos que não existem múltiplos buracos negros em um espaço-tempo estático no vácuo com a parte autodual do tensor de Weyl harmônico (i.e., divW+ = 0).
480

Modos quase-normais e a correspondência AdS/CFT / Quasinormal modes and the AdS/CFT correspondence

Miranda, Alex dos Santos 25 April 2008 (has links)
Conselho Nacional de Desenvolvimento Científico e Tecnológico / The electromagnetic and gravitational quasinormal mode spectra of plane-symmetric anti-de Sitter black holes are investigated in the present work. According to the AdS/CFT correspondence, the black hole quasinormal frequencies correspond to the poles of R-current and stress-energy tensor correlation functions in the holographically dual field theory: the N = 8 super-Yang-Mills in 2 + 1 dimensions. In the present study, this duality is explored in order to choose the quasinormal mode boundary conditions and the gauge invariant variables governing the black hole perturbations. Among the main results, it is shown that zero wavenumber axial perturbations yield only small rotations on the system, while the polar perturbations lead to a change in the mass of the black hole and may also produce cylindrical gravitational waves. In relation to the quasinormal spectra, the long-distance and low-frequency limit of the dispersion relations present the hydrodynamical behavior that is characteristic of a conformally invariant theory, with diffusion, shear and sound-wave modes. In the electromagnetic perturbation sector, it also appears purely damped modes that tend to the bosonic Matsubara frequencies in the long-wavelength regime. / No presente trabalho, investigou-se o espectro de vibrações eletromagnéticas e gravitacionais de buracos negros anti-de Sitter com horizontes plano-simétricos. Segundo a correspond ência AdS/CFT, os modos quase-normais desses buracos negros estão associados aos pólos de funções de correlação de corrente-R e do tensor energia-momento na teoria de campos holograficamente dual: a super-Yang-Mills N = 8 em 2 + 1 dimensões. Neste estudo, a relação com a teoria de campos foi explorada ao se fixar as condições de contorno que definem os modos quase-normais, bem como na escolha das quantidades invariantes de calibre que governam as perturbações dos buracos negros anti-de Sitter. Para obter as equações de onda gravitacionais, foram utilizados formalismos baseados em variações da métrica e dos escalares de curvatura de Weyl. Entre outros resultados, mostrou-se que as perturbações axiais com número de onda nulo produzem somente pequenas rotações sobre o sistema, enquanto que as perturbações polares conduzem a mudanças na massa e também podem se propagar na forma de ondas gravitacionais cilíndricas. Em relação ao espectro quase-normal, no limite de baixas freqüências e grandes comprimentos de onda, algumas relações de dispersão apresentam o comportamento hidrodinâmico característico de uma teoria conformemente invariante, com o aparecimento de modos de difusão, cisalhamento e de onda sonora. Por fim, no setor eletromagnético das perturbações, surgem também modos puramente amortecidos que tendem às freqüências de Matsubara de um sistema bosônico no regime de grandes comprimentos de onda.

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