Literatura académica sobre el tema "Simulations quantiques"
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Artículos de revistas sobre el tema "Simulations quantiques"
Amanti, Maria, Florent Baboux y Sara Ducci. "Les sources intégrées de photons intriqués au coeur des technologies quantiques". Photoniques, n.º 91 (mayo de 2018): 25–28. http://dx.doi.org/10.1051/photon/20189125.
Texto completoYefsah, Tarik y Clément Sayrin. "Simulation quantique avec des atomes froids. Comment manipuler et sonder des systèmes quantiques à l’échelle de l’atome individuel". Reflets de la physique, n.º 71 (enero de 2022): 8–15. http://dx.doi.org/10.1051/refdp/202271008.
Texto completoLellouch, Laurent. "Chromodynamique quantique sur réseau". Reflets de la physique, n.º 79 (octubre de 2024): 4–12. http://dx.doi.org/10.1051/refdp/202479004.
Texto completoGuillon, Grégoire, Pascal Honvault, Maxence Lepers, François Lique y Thierry Stoecklin. "Collisions moléculaires en phase gazeuse". Reflets de la physique, n.º 61 (marzo de 2019): 26–31. http://dx.doi.org/10.1051/refdp/201961026.
Texto completoPotvin, Jean. "La physique de la matière hadronique à haute température telle que décrite par la chromodynamique quantique sur réseau espace–temps". Canadian Journal of Physics 67, n.º 12 (1 de diciembre de 1989): 1228–49. http://dx.doi.org/10.1139/p89-206.
Texto completoBughin, Jacques. "Le monde avant et après Willow: quelle stratégie d'entreprise liée au mariage quantique et IA?" Management & Data Science, 2025. https://doi.org/10.36863/mds.a.39967.
Texto completoTRIOZON, François y Stephan ROCHE. "Simulation du transport quantique". Nanosciences et nanotechnologies, enero de 2010. http://dx.doi.org/10.51257/a-v1-nm400.
Texto completoNiasse, Oumar Absatou, Babacar Mbengue, By A. BA, Abdoulaye M. Ndiaye y Issakha Youm. "Effets des excitons sur le rendement quantique de la cellule solaire CdS/CdTe par le modèle de la fonction diélectrique". Journal of Renewable Energies 12, n.º 3 (26 de octubre de 2023). http://dx.doi.org/10.54966/jreen.v12i3.156.
Texto completoKeidy Alejandra, Alvarado Puentes. "“Enseñanza y aprendizaje de aspectos fundamentales de Física Cuántica en la escuela secundaria colombiana a partir del enfoque de Feynman"". RIDAA Tesis Unicen, 29 de octubre de 2021. http://dx.doi.org/10.52278/2899.
Texto completoTesis sobre el tema "Simulations quantiques"
Arnaud, Ludovic. "Statistique de l'interférence quantique et circuits quantiques aléatoires". Phd thesis, Université Paul Sabatier - Toulouse III, 2009. http://tel.archives-ouvertes.fr/tel-00599990.
Texto completoGaillard, Philippe. "Modélisation de la croissance de boîtes quantiques sous contrainte élastique". Thesis, Aix-Marseille, 2014. http://www.theses.fr/2014AIXM4303/document.
Texto completoThe growth and morphology of quantum dots is currently a popular subject as these structures have numerous potential uses, specifically in microelectronics and optoelectronics. Control of the size, shape and distribution of these dots is of critical importance for the uses that are being considered. This thesis presents a theoretical and numerical study of the growth of islands during molecular beam epitaxy. In order to study these dots, we used two models : a nonlinear study of an Asaro-Tiller-Grinfeld like instability, and kinetic Monte Carlo simulations. The first model is appropriate for low misfit systems, and is detailed in the case where misfit is anisotropic (this is the case when depositing GaN on AlGaN). In this case we took into account elastic effects, wetting effects and evaporation. Numerical calculations show faster growth, compared to the isotropic misfit case, and the growth of strongly anisotropic islands.The second model is based on kinetic Monte Carlo simulations that can describe 3D island nucleation. We use these simulations to study systems with high misfits, specifically Ge on Si. Adatom diffusion on a surface is considered and takes into account elastic effects, and surface energy anisotropy, that allows us to stabilize (105) facets. Simulation results show the growth of pyramid-shaped 3D islands, as observed in experiments, and their ripening is interrupted. The results of these simulations are then compared to the case of 2D nucleation, and we find that several of the known 2D properties also apply to 3D islands. Specifically, island density depends on a power law of D/F, the diffusion coefficient divided by the deposition flux
Gonon, Benjamin. "Simulations quantiques non-adiabatiques d’un photo-interrupteur moléculaire vers un dialogue expérience-théorie". Thesis, Montpellier, 2017. http://www.theses.fr/2017MONTT186/document.
Texto completoThis thesis adresses the study and control of the photo-reactivity of molecular switches, here the photo-isomerisation of spiropyrans. This theoretical work has been achieved in close collaboration with the experimental team PFL within the ICB in Dijon. Non-adiabatic quantum dynamics simulations were carried out so as to reproduce and rationalise the experimental results from time-resolved transient absorption spectroscopy. Such experiments have demonstrated ultra-fast photo-reactivity (~ 100 fs) following excitation by an ultra-short LASER pulse. It is interpreted as an internal conversion mechanism between the first singlet excited eletronic state and the ground state via a conical intersection. The theoretical study used the ring-opening reaction of benzopyran as a model. Developments were made regarding: (1) The exploration of the reaction mechanism and the computation of potential energy surfaces with perturbative, post-CASSCF quantum chemistry methods (XMCQDPT2). This investigation showed that results changed significantly compared to those reported in the literature with lower-level calculations. (2) The generation of a diabatic Hamiltonian based on ab initio XMCQDPT2 data. Owing to the significant anharmonicity in the ground electronic state, we designed a new effective approach, quite different from the previous studies. (3) The production of non-adiabatic quantum dynamics simulations using the MCTDH method. The results thus obtained are in excellent agreement with the experimental ones. Including explicitly the LASER pulse allowed us to reproduce and rationalise the action of pulse shaping on control observed in experiments. The present work thus made possible the succesful implementation of a theoretical/experimental collaboration
Giuriato, Umberto. "Dynamique des particules actives dans les superfluides et leur interaction avec les vortex quantiques". Thesis, Université Côte d'Azur, 2020. http://www.theses.fr/2020COAZ4062.
Texto completoSuperfluids are inviscid flows in which vorticity is supported on filaments with quantized circulation. Such objects, known as quantum vortices, exhibit a hydrodynamical behavior. Experimentally, the dynamics of superfluids has been studied by using particles, which nowadays have become the main tool for visualizing quantum vortices. In this Thesis, we study numerically and analytically the dynamics of active and finite-size particles in superfluids. The superfluid is modeled with the Gross–Pitaevskii equation, while the particles are implemented as moving repulsive potentials coupled with the macroscopic wave function describing the superfluid. Firstly, the model is used to investigate the interaction between particles and quantum vortices at very low temperatures. This part aims to give a theoretical background to the current experiments in which macroscopic particles are used to sample superfluid vortices and quantum turbulence. Specifically, we address the following problems: the capture of a particle by a quantum vortex, the reconnections of vortex filaments and the propagation of Kelvin waves in presence trapped particles and the dynamics of particles in decaying quantum turbulence. In the last part of the manuscript, finite temperature effects are studied in the Fourier-truncated Gross–Pitaevskii model. The goal is to characterize the dynamics of impurities immersed in a thermal bath and how their presence modifies the statistical properties of the fluid. In particular, the random motion of the impurities and the temperature dependence of the friction coefficient are studied. Finally, the clustering of impurities and its effect on the phase transitions of the condensate are investigated
Domenge, Jean-Christophe. "Brisures de symétrie dans les modèles de Heisenberg classiques et quantiques en deux dimensions". Paris 6, 2005. https://tel.archives-ouvertes.fr/tel-00010943.
Texto completoForets, Irurtia Marcelo Alejandro. "Marches quantiques et mécanique quantique relativiste". Thesis, Université Grenoble Alpes (ComUE), 2015. http://www.theses.fr/2015GREAM028/document.
Texto completoThis thesis is devoted to the development of two well-known models of computation for their application in quantum computer simulations. These models are the quantum walk (QW) and quantum cellular automata (QCA) models, and they constitute doubly strategic topics in this respect. First, they are privileged mathematical settings in which to encode the description of the actual physical system to be simulated. Second, they offer an experimentally viable architecture for actual physical devices performing the simulation.For QWs, we prove precise error bounds and convergence rates of the discrete scheme towards the Dirac equation, thus validating the QW as a quantum simulation scheme. Furthermore, for both models we formulate a notion of discrete Lorentz covariance, which admits a diagrammatic representation in terms of local, circuit equivalence rules. We also study the continuum limit of a wide class of QWs, and show that it leads to a class of PDEs which includes the Hamiltonian form of the massive Dirac equation in (1+1)-dimensional curved spacetime.Finally, we study the two particle sector of a QCA. We find the conditions for the existence of discrete spectrum (interpretable as molecular binding) for short-range and for long-range interactions. This is achieved using perturbation techniques of trace class operators and spectral analysis of unitary operators
Lévi, Benjamin. "Simulation de systèmes quantiques sur un ordinateur quantique réaliste". Phd thesis, Université Paris-Diderot - Paris VII, 2004. http://tel.archives-ouvertes.fr/tel-00007592.
Texto completoDi, Molfetta Giuseppe. "Discrete time quantum walks : from synthetic gauge fields to spontaneous equilibration". Thesis, Paris 6, 2015. http://www.theses.fr/2015PA066220/document.
Texto completoProblems too demanding for classical computers can be approached promisingly with quantum simulators, which operate using one controllable quantum system in order to investigate the behavior and properties of a less accessible one. Over the past few years, significant progress has been made in a number of experimental and theoretical fields. Quantum Walks (QWs) are simple and sophisticated discrete space and time dynamical systems and it has been shown that in the continuous limit different emergent quantum fields can be simulated. In this thesis we will draw on QWs to further explore various areas of interest in Physics. More specifically our analysis will branch out into three main directions: (i) the connection between QWs and quantum field theory, with particular attention to bridging the quantum coin of QWs with the geometrical properties of gauge field theories; (ii) the study of QWs' classical limit and of the transient semi-classical dynamics, especially in relation with field theories; (iii) the spontaneous equilibration and thermalization in some nonlinear QWs-like models. Every step of this thesis will be validated by specific analytical results and numerical implementations
Gondret, Victor. "On the entanglement of quasi-particles in a Bose-Einstein Condensate". Electronic Thesis or Diss., université Paris-Saclay, 2025. http://www.theses.fr/2025UPASP005.
Texto completoThis thesis focuses on the non-separability of pairs of quasi-particles excited by parametric resonance. The experimental setup used here allows the production of a Bose-Einstein condensate of metastable helium. The use of an ultra-cold atomic gas makes it possible to reach sufficiently low temperatures to observe intrinsically quantum phenomena: the non-separability of the state. In this work, we use the condensate as a coherent reservoir to populate two momentum modes. The advantage of metastable helium is its high internal energy, which allows the electronic detection of single particles. We therefore measure the position and the time of impact of the particles after a time of flight of 308 ms, which allows us to reconstruct the in-trap momentum distribution. In the first theoretical contribution of this work, we demonstrate that measuring the two- and four-body correlation functions not only attests to, but also quantifies the non-separability of a Gaussian state. We also derive a new entanglement witness using only the two-body correlation function. In the experimental part, we improve the machine used to produce our ultra-cold gas and enhance its stability. We implement original techniques to deflect part of the atoms and avoid the saturation of our detector. These improvements allow us to observe the non-separability of the state
Marquez, Martin Ivan. "Quantum walks : background geometry and gauge invariance". Electronic Thesis or Diss., Aix-Marseille, 2019. http://www.theses.fr/2019AIXM0698.
Texto completoThere are many problems that cannot be solved using current classical computers. One manner to approach a solution of these systems is by using quantum computers. However, building a quantum computer is really challenging from the experimental side. Quantum simulators have been capable to solve some of these problems, as they are realizable experimentally. Discrete Time Quantum Walks (DTQWs) have been proved to be an useful tool to quantum simulate physical systems. In the continuous limit, a family of differential equations can be achieved, in particular, the Dirac equation can be recovered. In this thesis we study QWs as possible schemes for quantum simulation. Specifically, we can summarize our results in: i) We introduce a QW-based model in which a brane theory can be simulated in the continuum, opening the possibility to study more general theories with extra dimensions; ii) Electromagnetic gauge invariance in QWs is discussed, presenting some similarities and differences to previous models. This QW model also makes a connection to gauge invariance in lattice gauge theories (LGT); iii) We introduce QWs over non-rectangular lattices, such a triangular or honeycomb structures, for the purpose of simulating the Dirac equation in the continuum. We also extent these models, by introducing local coin operators, that allow us to reproduce the dynamics of quantum particles under a curved space time
Libros sobre el tema "Simulations quantiques"
G, Hey Anthony J. y Feynman Richard Phillips, eds. Feynman and computation: Exploring the limits of computers. Cambridge, Mass: Westview Press/Perseus Books, 2002.
Buscar texto completoCurotto, Emanuele. Stochastic Simulations of Clusters. Taylor & Francis Group, 2009.
Buscar texto completoVasileska, Dragica, Stephen M. Goodnick y Gerhard Klimeck. Computational Electronics: Semiclassical and Quantum Device Modeling and Simulation. Taylor & Francis Group, 2017.
Buscar texto completoVasileska, Dragica, Stephen M. Goodnick y Gerhard Klimeck. Computational Electronics: Semiclassical and Quantum Device Modeling and Simulation. Taylor & Francis Group, 2017.
Buscar texto completoVasileska, Dragica, Stephen M. Goodnick y Gerhard Klimeck. Computational Electronics: Semiclassical and Quantum Device Modeling and Simulation. Taylor & Francis Group, 2017.
Buscar texto completoComputational Electronics: Semi-Classical and Quantum Device Modeling and Simulation. CRC, 2009.
Buscar texto completoCurotto, Emanuele. Stochastic Simulations of Clusters: Quantum Methods in Flat and Curved Spaces. Taylor & Francis Group, 2017.
Buscar texto completoCurotto, Emanuele. Stochastic Simulations of Clusters: Quantum Methods in Flat and Curved Spaces. Taylor & Francis Group, 2009.
Buscar texto completoStochastic simulations of clusters: Quantum methods in flat and curved spaces. Boca Raton: CRC Press, 2010.
Buscar texto completoVasileska, Dragica y Stephen Goodnick. Computational Electronics. Springer International Publishing AG, 2007.
Buscar texto completoCapítulos de libros sobre el tema "Simulations quantiques"
LUISIER, Mathieu, Cedric KLINKERT, Sara FIORE, Jonathan BACKMAN, Youseung LEE, Christian STIEGER y Áron SZABÓ. "Transistors à effet de champ basés sur des matériaux 2D : perspective de modélisation". En Au-delà du CMOS, 37–81. ISTE Group, 2024. http://dx.doi.org/10.51926/iste.9127.ch2.
Texto completoFARGES, François. "Les gemmes bleues de Louis XIV : des exceptionnelles redécouvertes au MNHN". En Les collections naturalistes dans la science du XXIe siècle, 33–42. ISTE Group, 2021. http://dx.doi.org/10.51926/iste.9049.ch3.
Texto completo"4. La simulation quantique avec des atomes froids". En Atomes, ions, molécules ultrafroids et technologies quantiques, 75–96. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-2510-3.c007.
Texto completo"4. La simulation quantique avec des atomes froids". En Atomes, ions, molécules ultrafroids et technologies quantiques, 75–96. EDP Sciences, 2020. https://doi.org/10.1051/978-2-7598-2377-2.c007.
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