999 resultados para Nambu-Goldstone modes


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Ce mémoire de recherche-création prend comme point de départ le film documentaire American Utopias que j’ai réalisé en 2014-2015. Le film nous plonge au cœur du quotidien de cinq communautés alternatives et expérimentales des États-Unis et réfléchit aux multiples défis et enjeux que vivent leurs membres. Organisé autour du thème de l’utopie, ce récit de voyage documentaire nous fait connaître tour à tour une communauté de mini-maisons à Washington D.C., une communauté « Earthship » à Ithaca, une communauté vivant sans électricité et sans pétrole au Missouri, un laboratoire urbain dans le désert de l’Arizona et le festival Burning Man au Nevada. La portion théorique de ce mémoire s’organise quant à elle autour de la question des approches du cinéma documentaire. Prenant comme appui la typologie de Bill Nichols, il s’agit ici de voir comment chaque approche privilégiée par le créateur de documentaire renvoie au réel d’une manière qui lui est propre. Grâce à une approche autopoïétique et un travail d’analyse de films, ce mémoire cherche également à circonscrire les forces et les limites intrinsèques à chaque mode. Ce faisant, le lecteur est amené à mieux comprendre les motivations qui soutiennent certains choix de création dans American Utopias.

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Ce texte est né d’une lecture captivée avant tout par le geste langagier du Rêve de d’Alembert. Au fil d’une analyse du style de Diderot et des procédés d’écriture mis en œuvre dans le Rêve, il m’est devenu de plus en plus évident qu’on ne saurait considérer la « forme » littéraire comme simple enveloppe ou pieuse passeuse du « fond » idéel dans un écrit philosophique si atypique et tant mûri au point de vue de l’intelligence du verbe. Il s’agit donc ci-dessous d’aborder les jeux discursifs de ce dialogue, en tant que tels, comme des actes philosophiques. J’espère ainsi montrer à quel point le matérialisme enchanté de Diderot ne se laisse pas distiller en pures propositions conceptuelles sans perdre par là sa chair et sa vie. Puisse également cet essai avoir été quelque peu contaminé par l’entrain et la jovialité de l’encyclopédiste qui, quand bien même il ne nous gagnerait pas à ses principes, peut toujours nous revivifier dans l’amour de l’invention philosophique.

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The question of stability of black hole was first studied by Regge and Wheeler who investigated linear perturbations of the exterior Schwarzschild spacetime. Further work on this problem led to the study of quasi-normal modes which is believed as a characteristic sound of black holes. Quasi-normal modes (QNMs) describe the damped oscillations under perturbations in the surrounding geometry of a black hole with frequencies and damping times of oscillations entirely fixed by the black hole parameters.In the present work we study the influence of cosmic string on the QNMs of various black hole background spacetimes which are perturbed by a massless Dirac field.

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Vibrational overtone spectra of acetophenone and benzaldehyde in the visible and near-infrared regions are studied by the dual beam thermal lens and the conventional near-infrared absorption techniques. The observed increase in the mechanical frequency of the aryl CH bond from that of benzene is attributed to the decrease in the aryl CH bond length caused by the electron-withdrawing property of the substituents. Overtone spectra also demonstrate that acetophenone contains two types of methyl CH bonds arising from the anisotropic environments created by oxygen lone pair and carbonyl P electrons. The local-mode parameters of the two types of CH bonds are compared with those of acetone and acetaldehyde. The possible factors influencing the methyl CH bonds in acetophenone are discussed.

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We have investigated edge modes of different multipolarity sustained by quantum antidots at zero magnetic field. The ground state of the antidot is described within a local-density-functional formalism. Two sum rules, which are exact within this formalism, have been derived and used to evaluate the energy of edge collective modes as a function of the surface density and the size of the antidot.

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We have carried out a systematic analysis of the transverse dipole spin response of a large-size quantum dot within time-dependent current density functional theory. Results for magnetic fields corresponding to integer filling factors are reported, as well as a comparison with the longitudinal dipole spin response. As in the two-dimensional electron gas, the spin response at high-spin magnetization is dominated by a low-energy transverse mode.

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We present a systematic study of ground state and spectroscopic properties of many-electron nanoscopic quantum rings. Addition energies at zero magnetic field (B) and electrochemical potentials as a function of B are given for a ring hosting up to 24 electrons. We find discontinuities in the excitation energies of multipole spin and charge density modes, and a coupling between the charge and spin density responses that allow to identify the formation of ferromagnetic ground states in narrow magnetic field regions. These effects can be observed in Raman experiments, and are related to the fractional Aharonov-Bohm oscillations of the energy and of the persistent current in the ring

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This thesis Entitled Studies on Quasinormal modes and Late-time tails black hole spacetimes. In this thesis, the signature of these new theories are probed on the evolution of field perturbations on the black hole spacetimes in the theory. Chapter 1 gives a general introduction to black holes and its perturbation formalism. Various concepts in the area covered by the thesis are also elucidated in this chapter. Chapter 2 describes the evolution of massive, charged scalar field perturbations around a Reissner-Nordstrom black hole surrounded by a static and spherically symmetric quintessence. Chapter 3 comprises the evolution of massless scalar, electromagnetic and gravitational fields around spherically symmetric black hole whose asymptotes are defined by the quintessence, with special interest on the late-time behavior. Chapter 4 examines the evolution of Dirac field around a Schwarzschild black hole surrounded by quintessence. Detailed numerical simulations are done to analyze the nature of field on different surfaces of constant radius . Chapter 5is dedicated to the study of the evolution of massless fields around the black hole geometry in the HL gravity.

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We compute the density-fluctuation spectrum of spherical 4HeN shells adsorbed on the outer surface of Cn fullerenes. The excitation spectrum is obtained within the random-phase approximation, with particle-hole elementary excitations and effective interaction extracted from a density-functional description of the shell structure. The presence of one or two solid helium layers adjacent to the adsorbing fullerene is phenomenologically accounted for. We illustrate our results for a selection of numbers of adsorbed atoms on C20, C60, and C120. The hydrodynamical model that has proven successful to describe helium excitations in the bulk and in restricted geometries permits to perform a rather exhaustive analysis of various fluid spherical systems, namely, spheres, cavities, free bubbles, and bound shells of variable size.

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We have investigated the fragmentation of collective modes in doped 4He drops in the framework of a finite-range density-functional theory, as well as the delocalization of the impurity inside the cluster. Our results indicate that the impurity is gradually delocalized inside the drop as the size of the latter increases. As an example, results are shown in the case of Xe-4HeN systems up to N=112.

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Isoscalar collective modes in a relativistic meson-nucleon system are investigated in the framework of the time-dependent Thomas-Fermi method. The energies of the collective modes are determined by solving consistently the dispersion relations and the boundary conditions. The energy weighted sum rule satisfied by the models considered allows the identification of the giant resonances. The percentage of the energy weighted sum rule exhausted by the collective modes is in agreement with experimental data, but the agreement with the energy of the modes depends on the model considered.

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