Initial Correlations in Non-equilibrium Quantum Thermodynamics

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (135 download)

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Book Synopsis Initial Correlations in Non-equilibrium Quantum Thermodynamics by : Niklas Felix Neubrand

Download or read book Initial Correlations in Non-equilibrium Quantum Thermodynamics written by Niklas Felix Neubrand and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Abstract: Quantum thermodynamics is a relatively young scientific field that tries to extend the phenomenological theory of thermodynamics to the quantum regime. Many dynamical approaches are based on the theory of open quantum systems and assume factorizing initial conditions. In this work we relax this requirement and study an open system which is initially correlated with a thermal environment. For a predetermined environmental state and correlation operator the reduced evolution can be described by affine equations of motion. We prove that these maps can be linearized uniquely from the set of trace-one operators to the set of all bounded operators. Hence, we introduce a linearized dynamical map which acts identical to the affine map on the set of physical system states. Likewise, we obtain a linear time-local master equation with a generalized Lindblad form involving an time-dependent effective Hamiltonian and a time-dependent dissipator with possibly negative coefficients. By applying a principle of minimal dissipation, we prove that the effective Hamiltonian is identical to its uncorrelated version. Then, we generalize the formalism of Colla and Breuer [1] for exact non-equilibrium thermodynamics. We identify the effective Hamiltonian with the internal energy observable and define a first law of thermodynamics. Here, the effects of the initial correlations appear as additional terms in the work, heat and internal energy rates. Similarly, we generalize the entropy production rate. As the expression is non-linear in the system state, the influence of the initial correlations is harder to analyze. Also meaningful conditions for positive entropy production rates, i.e. the second law, have still to be found for correlated initial states. To illustrate our results, we finally consider the application to the Jaynes-Cummings model, where we explicitly compare the thermodynamic quantities for the correlated and uncorrelated cases. [1] A. Colla and H.-P. Breuer, Phys Rev A 105, 052216 (2022)

The Theory of Non-Markovian Open Quantum Systems

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ISBN 13 :
Total Pages : 220 pages
Book Rating : 4.:/5 (244 download)

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Book Synopsis The Theory of Non-Markovian Open Quantum Systems by : Cesar Alberto Rodriguez

Download or read book The Theory of Non-Markovian Open Quantum Systems written by Cesar Alberto Rodriguez and published by . This book was released on 2008 with total page 220 pages. Available in PDF, EPUB and Kindle. Book excerpt: We study the role of correlations with the environment as the source of non-Markovian quantum evolutions. We first focus on the impact that correlations with the environment can have on the dynamical map that evolve the system. We expand the set of initial states of a system and its environment that are known to guarantee completely positive reduced dynamics for the system when the combined state evolves unitarily. We characterize the correlations in the initial state in terms of its quantum discord. The induced maps can be not completely positive when quantum correlations including, but not limited to, entanglement are present. We discuss the implications and limitations of the Markov approximation necessary to derive the Kossakowski-Lindblad master equation. A generalized non-Markovian master equation is derived from the dynamical map of systems correlated with their environment. The physical meaning of not completely positive maps is studied to obtain a consistent theory of non-Markovian quantum dynamics. These are associated to inverse maps necessary to establish correlations and they give rise to a canonical embedding map that is local in time. This master equation goes beyond the Kossakowski-Lindblad master equation. Non-equilibrium quantum thermodynamics can be be studied within this theory. Through out this discussion, the general dynamics of two interacting qubits is used as an example for illustrations.

Thermodynamics in the Quantum Regime

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Publisher : Springer
ISBN 13 : 3319990462
Total Pages : 998 pages
Book Rating : 4.3/5 (199 download)

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Book Synopsis Thermodynamics in the Quantum Regime by : Felix Binder

Download or read book Thermodynamics in the Quantum Regime written by Felix Binder and published by Springer. This book was released on 2019-04-01 with total page 998 pages. Available in PDF, EPUB and Kindle. Book excerpt: Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from quantum theory and addresses thermodynamic phenomena which appear in finite-size, non-equilibrium and finite-time contexts. Blending together elements from open quantum systems, statistical mechanics, quantum many-body physics, and quantum information theory, it pinpoints thermodynamic advantages and barriers emerging from genuinely quantum properties such as quantum coherence and correlations. Owing to recent experimental efforts, the field is moving quickly towards practical applications, such as nano-scale heat devices, or thermodynamically optimised protocols for emergent quantum technologies. Starting from the basics, the present volume reviews some of the most recent developments, as well as some of the most important open problems in quantum thermodynamics. The self-contained chapters provide concise and topical introductions to researchers who are new to the field. Experts will find them useful as a reference for the current state-of-the-art. In six sections the book covers topics such as quantum heat engines and refrigerators, fluctuation theorems, the emergence of thermodynamic equilibrium, thermodynamics of strongly coupled systems, as well as various information theoretic approaches including Landauer's principle and thermal operations. It concludes with a section dedicated to recent quantum thermodynamics experiments and experimental prospects on a variety of platforms ranging from cold atoms to photonic systems, and NV centres.

Nonequilibrium Many-Body Theory of Quantum Systems

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Publisher : Cambridge University Press
ISBN 13 : 1107354579
Total Pages : 619 pages
Book Rating : 4.1/5 (73 download)

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Book Synopsis Nonequilibrium Many-Body Theory of Quantum Systems by : Gianluca Stefanucci

Download or read book Nonequilibrium Many-Body Theory of Quantum Systems written by Gianluca Stefanucci and published by Cambridge University Press. This book was released on 2013-03-07 with total page 619 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Green's function method is one of the most powerful and versatile formalisms in physics, and its nonequilibrium version has proved invaluable in many research fields. This book provides a unique, self-contained introduction to nonequilibrium many-body theory. Starting with basic quantum mechanics, the authors introduce the equilibrium and nonequilibrium Green's function formalisms within a unified framework called the contour formalism. The physical content of the contour Green's functions and the diagrammatic expansions are explained with a focus on the time-dependent aspect. Every result is derived step-by-step, critically discussed and then applied to different physical systems, ranging from molecules and nanostructures to metals and insulators. With an abundance of illustrative examples, this accessible book is ideal for graduate students and researchers who are interested in excited state properties of matter and nonequilibrium physics.

Quantum Field Theory of Non-equilibrium States

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Publisher : Cambridge University Press
ISBN 13 : 9780521188005
Total Pages : 0 pages
Book Rating : 4.1/5 (88 download)

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Book Synopsis Quantum Field Theory of Non-equilibrium States by : Jørgen Rammer

Download or read book Quantum Field Theory of Non-equilibrium States written by Jørgen Rammer and published by Cambridge University Press. This book was released on 2011-03-03 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Quantum field theory is the application of quantum mechanics to systems with infinitely many degrees of freedom. This 2007 textbook presents quantum field theoretical applications to systems out of equilibrium. It introduces the real-time approach to non-equilibrium statistical mechanics and the quantum field theory of non-equilibrium states in general. It offers two ways of learning how to study non-equilibrium states of many-body systems: the mathematical canonical way and an easy intuitive way using Feynman diagrams. The latter provides an easy introduction to the powerful functional methods of field theory, and the use of Feynman diagrams to study classical stochastic dynamics is considered in detail. The developed real-time technique is applied to study numerous phenomena in many-body systems. Complete with numerous exercises to aid self-study, this textbook is suitable for graduate students in statistical mechanics and condensed matter physics.

Quantum Thermodynamics

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Publisher : Springer Science & Business Media
ISBN 13 : 3540705090
Total Pages : 338 pages
Book Rating : 4.5/5 (47 download)

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Book Synopsis Quantum Thermodynamics by : Jochen Gemmer

Download or read book Quantum Thermodynamics written by Jochen Gemmer and published by Springer Science & Business Media. This book was released on 2009-10-21 with total page 338 pages. Available in PDF, EPUB and Kindle. Book excerpt: Over the years enormous effort was invested in proving ergodicity, but for a number of reasons, con?dence in the fruitfulness of this approach has waned. — Y. Ben-Menahem and I. Pitowsky [1] Abstract The basic motivation behind the present text is threefold: To give a new explanation for the emergence of thermodynamics, to investigate the interplay between quantum mechanics and thermodynamics, and to explore possible ext- sions of the common validity range of thermodynamics. Originally, thermodynamics has been a purely phenomenological science. Early s- entists (Galileo, Santorio, Celsius, Fahrenheit) tried to give de?nitions for quantities which were intuitively obvious to the observer, like pressure or temperature, and studied their interconnections. The idea that these phenomena might be linked to other ?elds of physics, like classical mechanics, e.g., was not common in those days. Such a connection was basically introduced when Joule calculated the heat equ- alent in 1840 showing that heat was a form of energy, just like kinetic or potential energy in the theory of mechanics. At the end of the 19th century, when the atomic theory became popular, researchers began to think of a gas as a huge amount of bouncing balls inside a box.

Frontiers of Nonequilibrium Statistical Physics

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Publisher : Springer Science & Business Media
ISBN 13 : 1461321816
Total Pages : 487 pages
Book Rating : 4.4/5 (613 download)

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Book Synopsis Frontiers of Nonequilibrium Statistical Physics by : Gerald T. Moore

Download or read book Frontiers of Nonequilibrium Statistical Physics written by Gerald T. Moore and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 487 pages. Available in PDF, EPUB and Kindle. Book excerpt: The four-week period fran May 20 to June 16, 1984 was an intensive period of advanced study on the foundations and frontiers of nonequili brium statistical physics (NSP). During the first two weeks of this period, an advanced-study course on the "Foundations of NSP" was con ducted in Albuquerque under the sponsorship of the University of New Mexico Center for High-Technology Materials. This was followed by a two-week NATO Advanced Study Insti tute on the "Frontiers of NSP" in Santa Fe under the same directorship. Many Students attended both meetings. This book comprises proceedings based on those lectures and covering a broad spectrum of topics in NSP ranging fran basic problems in quantum measurement theory to analogies between lasers and Darwinian evolution. The various types of quantum distribution functions and their uses are treated by several authors. other tools of NSP, such as Langevin equations, Fokker-Planck equations, and master equations, are developed and applied to areas such as laser physics, plasma physics, Brownian motion, and hydrodynamic instabilities. The properties and experimental detection of squeezed states and antibunching are described, as well as experimental tests of the violation of Bell's inequality. Information theory, mean-field theory, reservoir theory, entropy maximization, and even a novel nonlinear generalization of quantum mechanics are used to discuss nonequilibrium phenanena and the approach toward thermodynamic equilibrium.

Thermodynamics and Quantum Correlations

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ISBN 13 :
Total Pages : 195 pages
Book Rating : 4.:/5 (112 download)

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Book Synopsis Thermodynamics and Quantum Correlations by : Martí Perarnau Llobet

Download or read book Thermodynamics and Quantum Correlations written by Martí Perarnau Llobet and published by . This book was released on 2017 with total page 195 pages. Available in PDF, EPUB and Kindle. Book excerpt: Thermodynamics traditionally deals with macroscopic systems at thermal equilibrium. However, since the very beginning of the theory, its range of applicability has only increased, nowadays being applied to virtually every field of science, and to systems of extremely different size. This thesis is devoted to the study of thermodynamics in the quantum regime. It contains original results on topics that include: Work extraction from quantum systems, fluctuations of work, the energetic value of correlations and entanglement, and the thermodynamics of closed quantum many body systems. First, we study work extraction from thermally isolated systems. Here the notion of passive states naturally arises, as those quantum states from which no work can be extracted. We start by characterising the set of passive states, and find the most energetic passive states, a dual family to the well known Gibbs (or thermal) states. Remarkably, passive states have the property of activation: When considered as a whole, several copies of passive states can become nonpassive. We study the dynamics of activation processes, and find a relation between the entanglement generated and the speed of the process. Next, we consider the possibility of extracting work from a system using an auxiliary thermal bath. In this case, according to the second law of thermodynamics, the amount of work is bounded by the free energy difference. We develop corrections to this law which arise from the finite size and the structure of the bath. We go on by studying the fluctuations of work. Fluctuations are particularly relevant for small systems, where their relative size is comparable to the average value itself. However, characterising the fluctuations in the quantum regime is particularly difficult, as measurements generically disturb the state. In fact, we derive a no go result, showing that it is not possible to exactly measure the fluctuations of work in quantum coherent processes. Despite this result, we develop a new scheme that allows for their approximate measurement. An important part of this thesis is devoted to the relation between quantum correlations and work. We start by considering a set of correlated states which are thermal at the local level, in which case the extractable work can only come from the correlations. We compute the amount of work that can be stored in entangled, separable and correlated states with a fixed entropy, by finding the corresponding optimal states and protocols. These results provide fundamental bounds on the potential of different type of correlations for work storage and extraction. Next, we consider the converse scenario, and study the creation of correlations from thermal states. We find thresholds on the maximal temperature for the generation of entanglement. We also work out the minimal work cost of creating different types of correlations, including total correlations, entanglement, and genuine multipartite entanglement. Finally, we study the thermodynamics of closed quantum systems. Here we use one of the most important recent insights from the study of equilibration in quantum systems: Closed many body systems do not equilibrate, but can be effectively described as if they had equilibrated when looking at a restricted, physically relevant, class of observables. Importantly, the corresponding equilibrium state is not necessarily a Gibbs state, but may be very well given by a Generalized Gibbs ensemble state. With this in mind, we develop a framework for studying entropy production and work extraction in closed quantum systems.

Nonequilibrium Thermodynamics

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Publisher : Newnes
ISBN 13 : 0444595813
Total Pages : 787 pages
Book Rating : 4.4/5 (445 download)

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Book Synopsis Nonequilibrium Thermodynamics by : Yasar Demirel

Download or read book Nonequilibrium Thermodynamics written by Yasar Demirel and published by Newnes. This book was released on 2013-12-16 with total page 787 pages. Available in PDF, EPUB and Kindle. Book excerpt: Natural phenomena consist of simultaneously occurring transport processes and chemical reactions. These processes may interact with each other and may lead to self-organized structures, fluctuations, instabilities, and evolutionary systems. Nonequilibrium Thermodynamics, Third Edition emphasizes the unifying role of thermodynamics in analyzing the natural phenomena. This third edition updates and expands on the first and second editions by focusing on the general balance equations for coupled processes of physical, chemical, and biological systems. The new edition contains a new chapter on stochastic approaches to include the statistical thermodynamics, mesoscopic nonequilibrium thermodynamics, fluctuation theory, information theory, and modeling the coupled biochemical systems in thermodynamic analysis. This new addition also comes with more examples and practice problems. Informs and updates on all the latest developments in the field Contributions from leading authorities and industry experts A useful text for seniors and graduate students from diverse engineering and science programs to analyze some nonequilibrium, coupled, evolutionary, stochastic, and dissipative processes Highlights fundamentals of equilibrium thermodynamics, transport processes and chemical reactions Expands the theory of nonequilibrium thermodynamics and its use in coupled transport processes and chemical reactions in physical, chemical, and biological systems Presents a unified analysis for transport and rate processes in various time and space scales Discusses stochastic approaches in thermodynamic analysis including fluctuation and information theories Has 198 fully solved examples and 287 practice problems An Instructor Resource containing the Solution Manual can be obtained from the author: [email protected]

Fluctuation Relations and Nonequilibrium Thermodynamics in Classical and Quantum Systems

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ISBN 13 : 9783039369980
Total Pages : 158 pages
Book Rating : 4.3/5 (699 download)

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Book Synopsis Fluctuation Relations and Nonequilibrium Thermodynamics in Classical and Quantum Systems by : Gabriele de Chiara

Download or read book Fluctuation Relations and Nonequilibrium Thermodynamics in Classical and Quantum Systems written by Gabriele de Chiara and published by . This book was released on 2020-09-04 with total page 158 pages. Available in PDF, EPUB and Kindle. Book excerpt: This Special Issue contains novel results in the area of out-of-equilibrium classical and quantum thermodynamics. Contributions are from different areas of physics, including statistical mechanics, quantum information and many-body systems.

Thermodynamics and Control of Open Quantum Systems

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Publisher : Cambridge University Press
ISBN 13 : 1316814572
Total Pages : 488 pages
Book Rating : 4.3/5 (168 download)

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Book Synopsis Thermodynamics and Control of Open Quantum Systems by : Gershon Kurizki

Download or read book Thermodynamics and Control of Open Quantum Systems written by Gershon Kurizki and published by Cambridge University Press. This book was released on 2022-01-13 with total page 488 pages. Available in PDF, EPUB and Kindle. Book excerpt: The control of open quantum systems and their associated quantum thermodynamic properties is a topic of growing importance in modern quantum physics and quantum chemistry research. This unique and self-contained book presents a unifying perspective of such open quantum systems, first describing the fundamental theory behind these formidably complex systems, before introducing the models and techniques that are employed to control their quantum thermodynamics processes. A detailed discussion of real quantum devices is also covered, including quantum heat engines and quantum refrigerators. The theory of open quantum systems is developed pedagogically, from first principles, and the book is accessible to graduate students and researchers working in atomic physics, quantum information, condensed matter physics, and quantum chemistry.

Equilibrium and Nonequilibrium Statistical Mechanics: Principles and Concepts

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Publisher : Avijit Lahiri
ISBN 13 :
Total Pages : 1623 pages
Book Rating : 4./5 ( download)

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Book Synopsis Equilibrium and Nonequilibrium Statistical Mechanics: Principles and Concepts by : Avijit Lahiri

Download or read book Equilibrium and Nonequilibrium Statistical Mechanics: Principles and Concepts written by Avijit Lahiri and published by Avijit Lahiri. This book was released on 2023-10-14 with total page 1623 pages. Available in PDF, EPUB and Kindle. Book excerpt: Equilibrium and Non-equilibrium Statistical Mechanics is a source-book of great value to college and university students embarking upon a serious reading of Statistical Mechanics, and is likely to be of interest to teachers of the subject as well. Written in a lucid style, the book builds up the subject from basics, and goes on to quite advanced and modern developments, giving an overview of the entire framework of statistical mechanics. The equilibrium ensembles of quantum and classical statistical mechanics are introduced at length, indicating their relation to equilibrium states of thermodynamic systems, and the applications of these ensembles in the case of the ideal gas are worked out, pointing out the relevance of the ideal gas in respect of a number of real-life systems. The application to interacting systems is then taken up by way of explaining the virial expansion of a dilute gas. The book then deals with a number of foundational questions relating to the existence of the thermodynamic limit and to the equivalence of the various equilibrium ensembles. The relevance of the thermodynamic limit in explaining phase transitions is indicated with reference to the Yang-Lee theory and the Kirkwood-Salsburg equations for correlation functions. The statistical mechanics of interacting systems is then taken up again, with reference to the 1D and 2D Ising model and to the spin glass model of disordered systems. Applications of the Mean field theory are worked out, explaining the Landau-Ginzburg theory, which is then followed by the renormalization group approach to phase transitions. Interacting systems in the quantum context are referred to, addressing separately the cases of interacting bosons and fermions. The case of the weakly interacting bosons is explained in details, while the Landau theory for fermi liquids is also explained in outline. The book then goes on to a modern but readable account of non-equilibrium statistical mechanics, explaining the link with irreversible thermodynamcs. After an exposition of the Boltzmann equations and the linear response theory illustrated with reference to the hydrodynamic model, it explains the statistical mechanics of reduced systems, in the context of a number of reduction schemes. This is followed by an account of the relevance of dynamical chaos in laying down the foundations of classical statistical mechanics, where the SRB distributon is introduced in the context of non-equilibrium steady states, with reference to which the principle of minimum entropy production is explaned. A number of basic fluctuation relations are then worked out, pointing out their relation to irreversible thermodynamics. Finally, the book explains the relevance of quantum chaos in addressing foundational issues in quantum statistical mechanics, beginning with Berry’s conjecture and then going on to an exposition of the eigenstate thermalization (ETH) hypothesis, indicating how the latter is relevant in explaining the processes of equilibriation and thermalization in thermodynamic systems and their sub-systems.

Non-Equilibrium Statistical Mechanics

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Publisher : Courier Dover Publications
ISBN 13 : 0486815552
Total Pages : 337 pages
Book Rating : 4.4/5 (868 download)

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Book Synopsis Non-Equilibrium Statistical Mechanics by : Ilya Prigogine

Download or read book Non-Equilibrium Statistical Mechanics written by Ilya Prigogine and published by Courier Dover Publications. This book was released on 2017-03-17 with total page 337 pages. Available in PDF, EPUB and Kindle. Book excerpt: Groundbreaking monograph by Nobel Prize winner for researchers and graduate students covers Liouville equation, anharmonic solids, Brownian motion, weakly coupled gases, scattering theory and short-range forces, general kinetic equations, more. 1962 edition.

Non-Equilibrium Statistical Mechanics

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Publisher : CRC Press
ISBN 13 : 1040118798
Total Pages : 257 pages
Book Rating : 4.0/5 (41 download)

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Book Synopsis Non-Equilibrium Statistical Mechanics by : James H. Luscombe

Download or read book Non-Equilibrium Statistical Mechanics written by James H. Luscombe and published by CRC Press. This book was released on 2024-09-23 with total page 257 pages. Available in PDF, EPUB and Kindle. Book excerpt: Statistical mechanics provides a framework for relating the properties of macroscopic systems (large collections of atoms, such as in a solid) to the microscopic properties of its parts. However, what happens when macroscopic systems are not in thermal equilibrium, where time is not only a relevant variable, but also essential? That is the province of nonequilibrium statistical mechanics – there are many ways for systems to be out of equilibrium! The subject is governed by fewer general principles than equilibrium statistical mechanics and consists of a number of different approaches for describing nonequilibrium systems. Financial markets are analyzed using methods of nonequilibrium statistical physics, such as the Fokker-Planck equation. Any system of sufficient complexity can be analyzed using the methods of nonequilibrium statistical mechanics. The Boltzmann equation is used frequently in the analysis of systems out of thermal equilibrium, from electron transport in semiconductors to modeling the early Universe following the Big Bang. This book provides an accessible yet very thorough introduction to nonequilibrium statistical mechanics, building on the author's years of teaching experience. Covering a broad range of advanced, extension topics, it can be used to support advanced courses on statistical mechanics, or as a supplementary text for core courses in this field. Key Features: Features a clear, accessible writing style which enables the author to take a sophisticated approach to the subject, but in a way that is suitable for advanced undergraduate students and above Presents foundations of probability theory and stochastic processes and treats principles and basic methods of kinetic theory and time correlation functions Accompanied by separate volumes on thermodynamics and equilibrium statistical mechanics, which can be used in conjunction with this book

Theory of Thermodynamic Measurements of Quantum Systems Far from Equilibrium

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Publisher : Springer Nature
ISBN 13 : 3030335747
Total Pages : 152 pages
Book Rating : 4.0/5 (33 download)

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Book Synopsis Theory of Thermodynamic Measurements of Quantum Systems Far from Equilibrium by : Abhay Shastry

Download or read book Theory of Thermodynamic Measurements of Quantum Systems Far from Equilibrium written by Abhay Shastry and published by Springer Nature. This book was released on 2019-11-26 with total page 152 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis presents several related advances in the field of nonequilibrium quantum thermodynamics. The central result is an ingenious proof that the local temperature and voltage measurement in a nonequilibrium system of fermions exists and is unique, placing the concept of local temperature on a rigorous mathematical footing for the first time. As an intermediate step, a proof of the positivity of the Onsager matrix of linear response theory is given -- a statement of the second law of thermodynamics that had lacked an independent proof for 85 years. A new experimental method to measure the local temperature of an electron system using purely electrical techniques is also proposed, which could enable improvements to the spatial resolution of thermometry by several orders of magnitude. Finally, a new mathematically-exact definition for the local entropy of a quantum system in a nonequilibrium steady state is derived. Several different measures of the local entropy are discussed, relating to the thermodynamics of processes that a local observer with varying degrees of information about the microstates of the system could carry out, and it is shown that they satisfy a hierarchy of inequalities. Proofs of the third law of thermodynamics for generic open quantum systems are presented, taking into account the entropic contribution due to localized states. Appropriately normalized (per-state) local entropies are defined and are used to quantify the departure from local equilibrium.

Open Quantum Systems Far from Equilibrium

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Publisher : Springer
ISBN 13 : 331903877X
Total Pages : 215 pages
Book Rating : 4.3/5 (19 download)

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Book Synopsis Open Quantum Systems Far from Equilibrium by : Gernot Schaller

Download or read book Open Quantum Systems Far from Equilibrium written by Gernot Schaller and published by Springer. This book was released on 2014-01-07 with total page 215 pages. Available in PDF, EPUB and Kindle. Book excerpt: This monograph provides graduate students and also professional researchers aiming to understand the dynamics of open quantum systems with a valuable and self-contained toolbox. Special focus is laid on the link between microscopic models and the resulting open-system dynamics. This includes how to derive the celebrated Lindblad master equation without applying the rotating wave approximation. As typical representatives for non-equilibrium configurations it treats systems coupled to multiple reservoirs (including the description of quantum transport), driven systems and feedback-controlled quantum systems. Each method is illustrated with easy-to-follow examples from recent research. Exercises and short summaries at the end of every chapter enable the reader to approach the frontiers of current research quickly and make the book useful for quick reference.

Nonequilibrium Thermodynamics and Its Statistical Foundations

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Publisher : Oxford University Press, USA
ISBN 13 :
Total Pages : 472 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Nonequilibrium Thermodynamics and Its Statistical Foundations by : Hans J. Kreuzer

Download or read book Nonequilibrium Thermodynamics and Its Statistical Foundations written by Hans J. Kreuzer and published by Oxford University Press, USA. This book was released on 1981 with total page 472 pages. Available in PDF, EPUB and Kindle. Book excerpt: