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Quantum Gases in Quasi-One-Dimensional Arrays

Quantum Gases in Quasi-One-Dimensional Arrays
Author: Mohammad Reza Bakhtiari
Publisher: Edizioni della Normale
Total Pages: 0
Release: 2008-02-15
Genre: Science
ISBN: 9788876423192

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The experimental achievement of Bose-Einstein condensation (1995) and of Fermi degeneracy (1999) in ultra-cold, dilute gases has opened a new field in atomic physics and condensed matter physics. This thesis presents an overview of theoretical and experimental facts on ultra-cold atomic gases. A Green's function scheme is examined, and the book also applies a novel spin-density-functional approach to the study of Fermi gases inside one-dimensional optical lattices.


Quantum Gases

Quantum Gases
Author: Nick Proukakis
Publisher: World Scientific
Total Pages: 579
Release: 2013
Genre: Science
ISBN: 1848168128

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This volume provides a broad overview of the principal theoretical techniques applied to non-equilibrium and finite temperature quantum gases. Covering Bose-Einstein condensates, degenerate Fermi gases, and the more recently realised exciton-polariton condensates, it fills a gap by linking between different methods with origins in condensed matter physics, quantum field theory, quantum optics, atomic physics, and statistical mechanics.


Correlations in Low-Dimensional Quantum Gases

Correlations in Low-Dimensional Quantum Gases
Author: Guillaume Lang
Publisher: Springer
Total Pages: 193
Release: 2018-12-29
Genre: Science
ISBN: 3030052850

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The book addresses several aspects of thermodynamics and correlations in the strongly-interacting regime of one-dimensional bosons, a topic at the forefront of current theoretical and experimental studies. Strongly correlated systems of one-dimensional bosons have a long history of theoretical study. Their experimental realisation in ultracold atom experiments is the subject of current research, which took off in the early 2000s. Yet these experiments raise new theoretical questions, just begging to be answered. Correlation functions are readily available for experimental measurements. In this book, they are tackled by means of sophisticated theoretical methods developed in condensed matter physics and mathematical physics, such as bosonization, the Bethe Ansatz and conformal field theory. Readers are introduced to these techniques, which are subsequently used to investigate many-body static and dynamical correlation functions.


Density Fluctuations in Quasi-One Dimensional Ultracold Bosonic Gases

Density Fluctuations in Quasi-One Dimensional Ultracold Bosonic Gases
Author: Julien Armijo
Publisher: LAP Lambert Academic Publishing
Total Pages: 336
Release: 2011-11
Genre:
ISBN: 9783845470627

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The repulsive 1D Bose gas is an emblematic model of many-body quantum physics whose solutions are known since the 60's. However it is only recently that experiments with ultracold atoms in tight waveguides allowed to test the theory, also raising new puzzles. This manuscript presents the implementation of a new experimental set-up, based on microfabricated devices called "atom chips," and the explorations that followed. The imaging was optimized to allow precise statistical studies of the in-situ atomic profiles. Density fluctuations up to their third moment are used as a powerful probe for the thermodynamics of 1D clouds. In particular, the quasicondensation transition is shown to be ruled by interactions and not by degeneracy, a particularity of 1D physics. Reaching record low temperatures, subpoissonian fluctuations are observed, providing evidence for the regime of dominant quantum fluctuations. Progress towards the regime of strong interactions is also described. The text includes a comprehensive synthesis on fluctuations in low dimensional superfluids and on the techniques developed to study density fluctuations. It should be useful for anyone interested in quantum gases


Problems of Nonlinear Mechanics and Physics of Materials

Problems of Nonlinear Mechanics and Physics of Materials
Author: Igor V. Andrianov
Publisher: Springer
Total Pages: 530
Release: 2018-07-31
Genre: Science
ISBN: 3319922343

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This book presents contributions on the current problems in a number of topical areas of nonlinear dynamics and physics, written by experts from Russia, Ukraine, Israel, Germany, Poland, Italy, the Netherlands, the USA, and France. The book is dedicated to Professor Leonid I. Manevitch, an outstanding scholar in the fields of Mechanics of Solids, Nonlinear Dynamics, and Polymer Physics, on the occasion of his 80th birthday.


Quantum Gases in Low Dimensions

Quantum Gases in Low Dimensions
Author: Ludovic Pricoupenko
Publisher:
Total Pages: 312
Release: 2004
Genre: Bose-Einstein condensation
ISBN:

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Probing Non-equilibrium Dynamics in Two-dimensional Quantum Gases

Probing Non-equilibrium Dynamics in Two-dimensional Quantum Gases
Author: Cheng-An Chen
Publisher:
Total Pages: 0
Release: 2022
Genre: Nonequilibrium thermodynamics
ISBN: 9788303113351

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This thesis explores the physics of non-equilibrium quantum dynamics in homogeneous two-dimensional (2D) quantum gases. Ultracold quantum gases driven out of equilibrium have been prominent platforms for studying quantum many-body physics. However, probing non-equilibrium dynamics in conventionally trapped, inhomogeneous atomic quantum gases has been a challenging task because coexisting mass transport and spreading of quantum correlations often complicate experimental analyses. In this work, the author solves this technical hurdle by producing ultracold cesium atoms in a quasi-2D optical box potential. The exquisite optical trap allows one to remove density inhomogeneity in a degenerate quantum gas and control its dimensionality. The author also details the development of a high-resolution, in situ imaging technique to monitor the evolution of collective excitations and quantum transport down to atomic shot-noise, and at the length scale of elementary collective excitations. Meanwhile, tunable Feshbach resonances in ultracold cesium atoms permit precise and dynamical control of interactions with high temporal and even spatial resolutions. By employing these state-of-the-art techniques, the author performed interaction quenches to control the generation and evolution of quasiparticles in quantum gases, presenting the first direct measurement of quantum entanglement between interaction quench generated quasiparticle pairs in an atomic superfluid. Quenching to attractive interactions, this work shows stimulated emission of quasiparticles, leading to amplified density waves and fragmentation, forming 2D matter-wave Townes solitons that were previously considered impossible to form in equilibrium due to their instability. This thesis unveils a set of scale-invariant and universal quench dynamics and provides unprecedented tools to explore quantum entanglement transport in a homogenous quantum gas.


New Developments in Condensed Matter Physics

New Developments in Condensed Matter Physics
Author: John V. Chang
Publisher: Nova Publishers
Total Pages: 320
Release: 2006
Genre: Science
ISBN: 9781594548222

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Condensed matter is one of the most active fields of physics, with a stream of discoveries in areas from superfluidity and magnetism to the optical, electronic and mechanical properties of materials such as semiconductors, polymers and carbon nanotubes. It includes the study of well-characterised solid surfaces, interfaces and nanostructures as well as studies of molecular liquids (molten salts, ionic solutions, liquid metals and semiconductors) and soft matter systems (colloidal suspensions, polymers, surfactants, foams, liquid crystals, membranes, biomolecules etc) including glasses and biological aspects of soft matter. The book presents state-of-art research in this exciting field.


Quantum Gases: Finite Temperature And Non-equilibrium Dynamics

Quantum Gases: Finite Temperature And Non-equilibrium Dynamics
Author: Nick P Proukakis
Publisher: World Scientific
Total Pages: 579
Release: 2013-02-21
Genre: Science
ISBN: 1908979704

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The 1995 observation of Bose-Einstein condensation in dilute atomic vapours spawned the field of ultracold, degenerate quantum gases. Unprecedented developments in experimental design and precision control have led to quantum gases becoming the preferred playground for designer quantum many-body systems.This self-contained volume provides a broad overview of the principal theoretical techniques applied to non-equilibrium and finite temperature quantum gases. Covering Bose-Einstein condensates, degenerate Fermi gases, and the more recently realised exciton-polariton condensates, it fills a gap by linking between different methods with origins in condensed matter physics, quantum field theory, quantum optics, atomic physics, and statistical mechanics. Thematically organised chapters on different methodologies, contributed by key researchers using a unified notation, provide the first integrated view of the relative merits of individual approaches, aided by pertinent introductory chapters and the guidance of editorial notes.Both graduate students and established researchers wishing to understand the state of the art will greatly benefit from this comprehensive and up-to-date review of non-equilibrium and finite temperature techniques in the exciting and expanding field of quantum gases and liquids./a