Dynamics Of One Dimensional Quantum Systems

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Dynamics of One-dimensional Quantum Systems

Author : Yoshio Kuramoto,Yūsuke Kato
Publisher : Unknown
Page : 488 pages
File Size : 48,6 Mb
Release : 2014-05-14
Category : Mathematics
ISBN : 0511596421

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Dynamics of One-dimensional Quantum Systems by Yoshio Kuramoto,Yūsuke Kato Pdf

A concise and accessible account of the dynamical properties of one-dimensional quantum systems, for graduate students and new researchers.

Dynamics of One-Dimensional Quantum Systems

Author : Yoshio Kuramoto,Yusuke Kato
Publisher : Cambridge University Press
Page : 487 pages
File Size : 42,5 Mb
Release : 2009-08-06
Category : Mathematics
ISBN : 9780521815987

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Dynamics of One-Dimensional Quantum Systems by Yoshio Kuramoto,Yusuke Kato Pdf

A concise and accessible account of the dynamical properties of one-dimensional quantum systems, for graduate students and new researchers.

Non-equilibrium Dynamics of One-Dimensional Bose Gases

Author : Tim Langen
Publisher : Springer
Page : 146 pages
File Size : 46,7 Mb
Release : 2015-05-22
Category : Science
ISBN : 9783319185644

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Non-equilibrium Dynamics of One-Dimensional Bose Gases by Tim Langen Pdf

This work presents a series of experiments with ultracold one-dimensional Bose gases, which establish said gases as an ideal model system for exploring a wide range of non-equilibrium phenomena. With the help of newly developed tools, like full distributions functions and phase correlation functions, the book reveals the emergence of thermal-like transient states, the light-cone-like emergence of thermal correlations and the observation of generalized thermodynamic ensembles. This points to a natural emergence of classical statistical properties from the microscopic unitary quantum evolution, and lays the groundwork for a universal framework of non-equilibrium physics. The thesis investigates a central question that is highly contested in quantum physics: how and to which extent does an isolated quantum many-body system relax? This question arises in many diverse areas of physics, and many of the open problems appear at vastly different energy, time and length scales, ranging from high-energy physics and cosmology to condensed matter and quantum information. A key challenge in attempting to answer this question is the scarcity of quantum many-body systems that are both well isolated from the environment and accessible for experimental study.

Coherent Dynamics of Complex Quantum Systems

Author : Vladimir M. Akulin
Publisher : Springer Science & Business Media
Page : 477 pages
File Size : 54,5 Mb
Release : 2005-12-21
Category : Science
ISBN : 9783540292715

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Coherent Dynamics of Complex Quantum Systems by Vladimir M. Akulin Pdf

Coherent Dynamics of Complex Quantum Systems is aimed at senior-level undergraduate students in the areas of atomic, molecular, and laser physics, physical chemistry, quantum optics and quantum informatics. It should help them put particular problems in these fields into a broader scientific context and thereby take advantage of the well-elaborated technique of the adjacent fields.

Dynamics and Characterization of Composite Quantum Systems

Author : Manuel Gessner
Publisher : Springer
Page : 347 pages
File Size : 40,8 Mb
Release : 2016-10-03
Category : Science
ISBN : 9783319444598

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Dynamics and Characterization of Composite Quantum Systems by Manuel Gessner Pdf

This thesis sheds new light on the fascinating properties of composite quantum systems. Quantum systems of different sizes, ranging from small bipartite systems to large many-body ensembles, can be studied with the help of modern quantum optical experiments. These experiments make it possible to observe a broad variety of striking features, including nonclassical correlations, complex dynamics and quantum phase transitions. By adopting the complementary perspectives of quantum information theory, quantum chemistry and many-body theory, the thesis develops new methods for the efficient characterization and description of interacting, composite quantum systems.

Les Houches 2012, Session XCIX

Author : Thierry Giamarchi,Hubert Saleur,Andrew J. Millis,Olivier Parcollet,Leticia F. Cugliandolo
Publisher : Oxford University Press
Page : 607 pages
File Size : 53,7 Mb
Release : 2016
Category : Science
ISBN : 9780198768166

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Les Houches 2012, Session XCIX by Thierry Giamarchi,Hubert Saleur,Andrew J. Millis,Olivier Parcollet,Leticia F. Cugliandolo Pdf

Over the last decade new experimental tools and theoretical concepts are providing new insights into collective nonequilibrium behaviour of quantum systems. On the solid state front, high intensity short-timepulses and fast (femtosecond) probes allow solids to be put into highly excited states and probed before relaxation and dissipation occur. Experimental developments are matched by progress in theoretical techniques ranging from exact solutions of strongly interacting nonequilibrium models to newapproaches to nonequilibrium numerics. The summer school held at the Les Houches School of Physics as its XCIX session was designed to summarise this progress, lay out the open questions and define directions for future work. This books collects the lecture notes of the main courses given in this summer school.

Quantum Dynamics with Trajectories

Author : Robert E. Wyatt
Publisher : Springer Science & Business Media
Page : 425 pages
File Size : 55,8 Mb
Release : 2006-05-28
Category : Mathematics
ISBN : 9780387281452

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Quantum Dynamics with Trajectories by Robert E. Wyatt Pdf

This is a rapidly developing field to which the author is a leading contributor New methods in quantum dynamics and computational techniques, with applications to interesting physical problems, are brought together in this book Useful to both students and researchers

An Introduction to Integrable Techniques for One-Dimensional Quantum Systems

Author : Fabio Franchini
Publisher : Springer
Page : 180 pages
File Size : 50,6 Mb
Release : 2017-05-25
Category : Science
ISBN : 9783319484877

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An Introduction to Integrable Techniques for One-Dimensional Quantum Systems by Fabio Franchini Pdf

This book introduces the reader to basic notions of integrable techniques for one-dimensional quantum systems. In a pedagogical way, a few examples of exactly solvable models are worked out to go from the coordinate approach to the Algebraic Bethe Ansatz, with some discussion on the finite temperature thermodynamics. The aim is to provide the instruments to approach more advanced books or to allow for a critical reading of research articles and the extraction of useful information from them. We describe the solution of the anisotropic XY spin chain; of the Lieb-Liniger model of bosons with contact interaction at zero and finite temperature; and of the XXZ spin chain, first in the coordinate and then in the algebraic approach. To establish the connection between the latter and the solution of two dimensional classical models, we also introduce and solve the 6-vertex model. Finally, the low energy physics of these integrable models is mapped into the corresponding conformal field theory. Through its style and the choice of topics, this book tries to touch all fundamental ideas behind integrability and is meant for students and researchers interested either in an introduction to later delve in the advance aspects of Bethe Ansatz or in an overview of the topic for broadening their culture.

Dynamics, Information and Complexity in Quantum Systems

Author : Fabio Benatti
Publisher : Springer Nature
Page : 620 pages
File Size : 55,6 Mb
Release : 2023-09-23
Category : Science
ISBN : 9783031342486

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Dynamics, Information and Complexity in Quantum Systems by Fabio Benatti Pdf

This second edition of Dynamics, Information and Complexity in Quantum Systems widens its scope by focussing more on the dynamics of quantum correlations and information in microscopic and mesoscopic systems, and their use for metrological and machine learning purposes. The book is divided into three parts: Part One: Classical Dynamical Systems Addresses classical dynamical systems, classical dynamical entropy, and classical algorithmic complexity. Includes a survey of the theory of simple perceptrons and their storage capacity. Part Two: Quantum Dynamical Systems Focuses on the dynamics of entanglement under dissipative dynamics and its metrological use in finite level quantum systems. Discusses the quantum fluctuation approach to large-scale mesoscopic systems and their emergent dynamics in quantum systems with infinitely many degrees of freedom. Introduces a model of quantum perceptron whose storage capacity is computed and compared with the classical one. Part Three: Quantum Dynamical Entropies and Complexities Devoted to quantum dynamical entropies and algorithmic complexities. This book is meant for advanced students, young and senior researchers working in the fields of quantum statistical mechanics, quantum information, and quantum dynamical systems. It is self-contained, and the only prerequisites needed are a standard knowledge of statistical mechanics, quantum mechanics, and linear operators on Hilbert spaces.

Quantum Dynamics and Information

Author : Robert Olkiewicz,Wojciech Cegla,Andrzej Frydryszak
Publisher : World Scientific
Page : 241 pages
File Size : 45,5 Mb
Release : 2011
Category : Science
ISBN : 9789814317436

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Quantum Dynamics and Information by Robert Olkiewicz,Wojciech Cegla,Andrzej Frydryszak Pdf

The central theme of this lecture collection is quantum dynamics, regarded mostly as the dynamics of entanglement and that of decoherence phenomena. Both these concepts appear to refer to the behavior of surprisingly fragile features of quantum systems supposed to model quantum memories and to implement quantum date processing routines. This collection may serve as an essential resource for those interested in both theoretical description and practical applications of fundamentals of quantum mechanics.

Probing Non-Equilibrium Dynamics in Two-Dimensional Quantum Gases

Author : Cheng-An Chen
Publisher : Springer Nature
Page : 151 pages
File Size : 43,6 Mb
Release : 2022-10-11
Category : Science
ISBN : 9783031133558

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Probing Non-Equilibrium Dynamics in Two-Dimensional Quantum Gases by Cheng-An Chen Pdf

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.

Classical Nonintegrability, Quantum Chaos

Author : Andreas Knauf,Yakov G. Sinai
Publisher : Birkhäuser
Page : 104 pages
File Size : 47,6 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783034889322

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Classical Nonintegrability, Quantum Chaos by Andreas Knauf,Yakov G. Sinai Pdf

Our DMV Seminar on 'Classical Nonintegrability, Quantum Chaos' intended to introduce students and beginning researchers to the techniques applied in nonin tegrable classical and quantum dynamics. Several of these lectures are collected in this volume. The basic phenomenon of nonlinear dynamics is mixing in phase space, lead ing to a positive dynamical entropy and a loss of information about the initial state. The nonlinear motion in phase space gives rise to a linear action on phase space functions which in the case of iterated maps is given by a so-called transfer operator. Good mixing rates lead to a spectral gap for this operator. Similar to the use made of the Riemann zeta function in the investigation of the prime numbers, dynamical zeta functions are now being applied in nonlinear dynamics. In Chapter 2 V. Baladi first introduces dynamical zeta functions and transfer operators, illustrating and motivating these notions with a simple one-dimensional dynamical system. Then she presents a commented list of useful references, helping the newcomer to enter smoothly into this fast-developing field of research. Chapter 3 on irregular scattering and Chapter 4 on quantum chaos by A. Knauf deal with solutions of the Hamilton and the Schr6dinger equation. Scatter ing by a potential force tends to be irregular if three or more scattering centres are present, and a typical phenomenon is the occurrence of a Cantor set of bounded orbits. The presence of this set influences those scattering orbits which come close.

Time-Resolved Spectroscopy

Author : Thomas Weinacht,Brett J. Pearson
Publisher : CRC Press
Page : 358 pages
File Size : 40,6 Mb
Release : 2018-12-21
Category : Science
ISBN : 9780429804182

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Time-Resolved Spectroscopy by Thomas Weinacht,Brett J. Pearson Pdf

This concise and carefully developed text offers a reader friendly guide to the basics of time-resolved spectroscopy with an emphasis on experimental implementation. The authors carefully explain and relate for the reader how measurements are connected to the core physical principles. They use the time-dependent wave packet as a building block for understanding quantum dynamics, progressively advancing to more complex topics. The topics are discussed in paired sections, one discussing the theory and the next presenting the related experimental methods. A wide range of readers including students and newcomers to the field will gain a clear and practical understanding of how to measure aspects of molecular dynamics such as wave packet motion, intramolecular vibrational relaxation, and electron-electron coupling, and how to describe such measurements mathematically.

Quantum Simulations with Photons and Polaritons

Author : Dimitris G. Angelakis
Publisher : Springer
Page : 214 pages
File Size : 47,9 Mb
Release : 2017-05-03
Category : Science
ISBN : 9783319520254

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Quantum Simulations with Photons and Polaritons by Dimitris G. Angelakis Pdf

This book reviews progress towards quantum simulators based on photonic and hybrid light-matter systems, covering theoretical proposals and recent experimental work. Quantum simulators are specially designed quantum computers. Their main aim is to simulate and understand complex and inaccessible quantum many-body phenomena found or predicted in condensed matter physics, materials science and exotic quantum field theories. Applications will include the engineering of smart materials, robust optical or electronic circuits, deciphering quantum chemistry and even the design of drugs. Technological developments in the fields of interfacing light and matter, especially in many-body quantum optics, have motivated recent proposals for quantum simulators based on strongly correlated photons and polaritons generated in hybrid light-matter systems. The latter have complementary strengths to cold atom and ion based simulators and they can probe for example out of equilibrium phenomena in a natural driven-dissipative setting. This book covers some of the most important works in this area reviewing the proposal for Mott transitions and Luttinger liquid physics with light, to simulating interacting relativistic theories, topological insulators and gauge field physics. The stage of the field now is at a point where on top of the numerous theory proposals; experiments are also reported. Connecting to the theory proposals presented in the chapters, the main experimental quantum technology platforms developed from groups worldwide to realize photonic and polaritonic simulators in the laboratory are also discussed. These include coupled microwave resonator arrays in superconducting circuits, semiconductor based polariton systems, and integrated quantum photonic chips. This is the first book dedicated to photonic approaches to quantum simulation, reviewing the fundamentals for the researcher new to the field, and providing a complete reference for the graduate student starting or already undergoing PhD studies in this area.

Numerical Quantum Dynamics

Author : W. Schweizer
Publisher : Springer Science & Business Media
Page : 280 pages
File Size : 52,7 Mb
Release : 2005-12-27
Category : Science
ISBN : 9780306476174

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Numerical Quantum Dynamics by W. Schweizer Pdf

It is an indisputable fact that computational physics form part of the essential landscape of physical science and physical education. When writing such a book, one is faced with numerous decisions, e. g. : Which topics should be included? What should be assumed about the readers’ prior knowledge? How should balance be achieved between numerical theory and physical application? This book is not elementary. The reader should have a background in qu- tum physics and computing. On the other way the topics discussed are not addressed to the specialist. This work bridges hopefully the gap between - vanced students, graduates and researchers looking for computational ideas beyond their fence and the specialist working on a special topic. Many imp- tant topics and applications are not considered in this book. The selection is of course a personal one and by no way exhaustive and the material presented obviously reflects my own interest. What is Computational Physics? During the past two decades computational physics became the third fun- mental physical discipline. Like the ‘traditional partners’ experimental physics and theoretical physics, computational physics is not restricted to a special area, e. g. , atomic physics or solid state physics. Computational physics is a meth- ical ansatz useful in all subareas and not necessarily restricted to physics. Of course this methods are related to computational aspects, which means nume- cal and algebraic methods, but also the interpretation and visualization of huge amounts of data.