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Application-driven Quantum And Statistical Physics: A Short Course For Future Scientists And Engineers - Volume 3: Transitions, Gillet Jean-michel


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Автор: Gillet Jean-michel
Название:  Application-driven Quantum And Statistical Physics: A Short Course For Future Scientists And Engineers - Volume 3: Transitions
ISBN: 9781786347886
Издательство: World Scientific Publishing
Классификация:
ISBN-10: 1786347881
Обложка/Формат: Hardback
Страницы: 340
Вес: 0.63 кг.
Дата издания: 08.07.2020
Серия: Essential textbooks in physics
Язык: English
Размер: 153 x 229 x 22
Читательская аудитория: Tertiary education (us: college)
Ключевые слова: Quantum physics (quantum mechanics & quantum field theory), SCIENCE / Physics / Condensed Matter,SCIENCE / Physics / Optics & Light,SCIENCE / Physics / Quantum Theory
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Поставляется из: Англии
Описание: Bridging the gap between traditional books on quantum and statistical physics, this series is an ideal introductory course for students who are looking for an alternative approach to the traditional academic treatment.This pedagogical approach relies heavily on scientific or technological applications from a wide range of fields. For every new concept introduced, an application is given to connect the theoretical results to a real-life situation. Each volume features in-text exercises and detailed solutions, with easy-to-understand applications.This third volume covers several basic and more advanced subjects about transitions in quantum and statistical physics. The first part describes how the quantum statistics of fermions and bosons differ but also under what condition they both can merge into the classical-particle-statistics framework seen in Volume 2. It is also the opportunity to describe the fundamentals of conductors, semi-conductors, superconductors, superfluids and Bose-Einstein condensates. The second part introduces time-dependent transitions between quantum states. The time evolution of a simple two-level model gives the minimum background in order to provide more details on the lasers principle and its numerous uses. The time-dependent perturbation theory is then presented. Typical applications such as standard approaches to the scattering of massive particles (mostly neutrons, which are an archetype) are discussed. A semi-classical treatment of the electromagnetic field-matter interaction is also described. Illustrations are taken from a variety of processes such as scattering from phonons, charge distribution or spin densities. The third and last part of the book gives a brief overview of quantum electrodynamics basics with applications to photon absorption or emission spectroscopies and a range of scattering regimes. There follows a short introduction to the role of multi-photon processes in quantum-entanglement based experiments.

Annotations to Quantum Statistical Mechanics

Автор: In-Gee Kim
Название: Annotations to Quantum Statistical Mechanics
ISBN: 9814774154 ISBN-13(EAN): 9789814774154
Издательство: Taylor&Francis
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Цена: 118410.00 T
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Описание: This book is a rewritten and annotated version of Leo P. Kadanoff and Gordon Baym`s lectures that were presented in the book Quantum Statistical Mechanics: Green`s Function Methods in Equilibrium and Nonequilibrium Problems.

Perspectives on statistical thermodynamics

Автор: Oono, Yoshitsugu (university Of Illinois, Urbana-champaign)
Название: Perspectives on statistical thermodynamics
ISBN: 1107154014 ISBN-13(EAN): 9781107154018
Издательство: Cambridge Academ
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Цена: 69690.00 T
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Описание: This original text develops a deep, conceptual understanding of thermal physics and highlights the important links between statistical physics and classical thermodynamics. It examines how thermal physics fits within physics as a whole, and is perfect for undergraduate and graduate students, and researchers interested in a fresh approach to the subject.

Quantum Chaos and Statistical Nuclear Physics

Автор: Thomas H. Seligman; Hidetoshi Nishioka
Название: Quantum Chaos and Statistical Nuclear Physics
ISBN: 3662135914 ISBN-13(EAN): 9783662135914
Издательство: Springer
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Цена: 104480.00 T
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Low-Dimensional Models in Statistical Physics and Quantum Field Theory

Автор: Harald Grosse; Ludwig Pittner
Название: Low-Dimensional Models in Statistical Physics and Quantum Field Theory
ISBN: 3662140683 ISBN-13(EAN): 9783662140680
Издательство: Springer
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Цена: 104480.00 T
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Описание: The main items can be grouped into integrable (quantum) spin systems, which lead in the continuum limit to (conformal invariant) quantum field theory models and their algebraic structures, ranging from the Yang-Baxter equation and quantum groups to noncommutative geometry.

Quantum statistical field theory

Автор: Horing, Norman J. Morgenstern (emeritus Professor, Department Of Physics And Engineering Physics, Stevens Institute Of Technology, Hoboken, Usa)
Название: Quantum statistical field theory
ISBN: 0198791941 ISBN-13(EAN): 9780198791942
Издательство: Oxford Academ
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Цена: 95040.00 T
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Описание: The methods of coupled quantum field theory, which have played a major role in the extensive development of nonrelativistic quantum many-particle theory and condensed matter physics, are at the core of this book.

Relativistic Many-Body Theory and Statistical Mechanics

Автор: Lawrence P. Horwitz, Rafael I. Arshansky
Название: Relativistic Many-Body Theory and Statistical Mechanics
ISBN: 1681749491 ISBN-13(EAN): 9781681749495
Издательство: Mare Nostrum (Eurospan)
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Цена: 82230.00 T
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Описание: In 1941, E.C.G. Stueckelberg wrote a paper, based on ideas of V. Fock, that established the foundations of a theory that could covariantly describe the classical and quantum relativistic mechanics of a single particle. Horwitz and Piron extended the applicability of this theory in 1973 (to be called the SHP theory) to the many-body problem. It is the purpose of this book to explain this development and provide examples of its applications.We first review the basic ideas of the SHP theory, both classical and quantum, and develop the appropriate form of electromagnetism on this dynamics. After studying the two body problem classically and quantum mechanically, we formulate the N-body problem. We then develop the general quantum scattering theory for the N-body problem and prove a quantum mechanical relativistically covariant form of the Gell-Mann-Low theorem. The quantum theory of relativistic spin is then developed, including spin-statistics, providing the necessary apparatus for Clebsch-Gordan additivity, and we then discuss the phenomenon of entanglement at unequal times.In the second part, we develop relativistic statistical mechanics, including a mechanism for stability of the off-shell mass, and a high temperature phase transition to the mass shell. Finally, some applications are given, such as the explanation of the Lindneret alexperiment, the proposed experiment of Palacios et al which should demonstrate relativistic entanglement (at unequal times), the space-time lattice, low energy nuclear reactions and applications to black hole physics.

Statistical Mechanics

Автор: S.L. Kakani, C. Hemrajani
Название: Statistical Mechanics
ISBN: 9386385309 ISBN-13(EAN): 9789386385307
Издательство: Mare Nostrum (Eurospan)
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Цена: 51750.00 T
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Описание: This comprehensive text written for M.Sc. (Physics, Chemistry), B.Sc. (Hons) and M.Phil (Physics) students aims at presenting the fundamentals of statistical mechanics in a clear and concise manner. In fourteen chapters, the book deals with all aspects of statistical mechanics: Thermodynamics, Microcanonical Ensemble, Canonical Ensemble, Grand Canonical Ensemble, MB Distribution, FD Distribution, BE Distribution for an ideal gas. The text also delves into certain topics of special interest, such as Interacting Systems, Phase Transitions, Kinetic Physics, Dynamical Theory of Gases, etc. The book concludes with an appendix on semiconductor statistics.

Key Features

  • Comprehensive and lucid presentation on the fundamentals of statistical mechanics.
  • Good number of worked out problems and glimpses are given at the end of each chapter, which helps in reviewing the entire chapter in a short time.
  • Review questions, short question answers, multiple choice questions with answers.
  • The book is student friendly, though provoking and stimulating.

Relativistic Many-Body Theory and Statistical Mechanics

Автор: Lawrence P. Horwitz, Rafael I. Arshansky
Название: Relativistic Many-Body Theory and Statistical Mechanics
ISBN: 1681749459 ISBN-13(EAN): 9781681749457
Издательство: Mare Nostrum (Eurospan)
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Цена: 61910.00 T
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Описание: In 1941, E.C.G. Stueckelberg wrote a paper, based on ideas of V. Fock, that established the foundations of a theory that could covariantly describe the classical and quantum relativistic mechanics of a single particle. Horwitz and Piron extended the applicability of this theory in 1973 (to be called the SHP theory) to the many-body problem. It is the purpose of this book to explain this development and provide examples of its applications.We first review the basic ideas of the SHP theory, both classical and quantum, and develop the appropriate form of electromagnetism on this dynamics. After studying the two body problem classically and quantum mechanically, we formulate the N-body problem. We then develop the general quantum scattering theory for the N-body problem and prove a quantum mechanical relativistically covariant form of the Gell-Mann-Low theorem. The quantum theory of relativistic spin is then developed, including spin-statistics, providing the necessary apparatus for Clebsch-Gordan additivity, and we then discuss the phenomenon of entanglement at unequal times.In the second part, we develop relativistic statistical mechanics, including a mechanism for stability of the off-shell mass, and a high temperature phase transition to the mass shell. Finally, some applications are given, such as the explanation of the Lindneret alexperiment, the proposed experiment of Palacios et al which should demonstrate relativistic entanglement (at unequal times), the space-time lattice, low energy nuclear reactions and applications to black hole physics.

Equilibrium and Nonequilibrium Aspects of Phase Transitions in Quantum Physics

Автор: Ricardo Puebla
Название: Equilibrium and Nonequilibrium Aspects of Phase Transitions in Quantum Physics
ISBN: 3030131386 ISBN-13(EAN): 9783030131388
Издательство: Springer
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Цена: 93160.00 T
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Описание: In this book, the equilibrium and nonequilibrium properties of continuous phase transitions are studied in various systems, with a special emphasis on understanding how well-established universal traits at equilibrium may be extended into the dynamic realm, going beyond the paradigmatic Kibble–Zurek mechanism of defect formation. This book reports on the existence of a quantum phase transition in a system comprising just a single spin and a bosonic mode (the quantum Rabi model). Though critical phenomena are inherent to many-body physics, the author demonstrates that this small and ostensibly simple system allows us to explore the rich phenomenology of phase transitions, both in- and out-of-equilibrium. Moreover, the universal traits of this quantum phase transition may be realized in a single trapped-ion experiment, thus avoiding the need to scale up the number of constituents. In this system, the phase transition takes place in a suitable limit of system parameters rather than in the conventional thermodynamic limit – a novel notion that the author and his collaborators have dubbed the finite-component system phase transition. As such, the results gathered in this book will open promising new avenues in our understanding and exploration of quantum critical phenomena.

Equilibrium and Nonequilibrium Aspects of Phase Transitions in Quantum Physics

Автор: Ricardo Puebla
Название: Equilibrium and Nonequilibrium Aspects of Phase Transitions in Quantum Physics
ISBN: 3030006522 ISBN-13(EAN): 9783030006525
Издательство: Springer
Рейтинг:
Цена: 93160.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: In this book, the equilibrium and nonequilibrium properties of continuous phase transitions are studied in various systems, with a special emphasis on understanding how well-established universal traits at equilibrium may be extended into the dynamic realm, going beyond the paradigmatic Kibble–Zurek mechanism of defect formation. This book reports on the existence of a quantum phase transition in a system comprising just a single spin and a bosonic mode (the quantum Rabi model). Though critical phenomena are inherent to many-body physics, the author demonstrates that this small and ostensibly simple system allows us to explore the rich phenomenology of phase transitions, both in- and out-of-equilibrium. Moreover, the universal traits of this quantum phase transition may be realized in a single trapped-ion experiment, thus avoiding the need to scale up the number of constituents. In this system, the phase transition takes place in a suitable limit of system parameters rather than in the conventional thermodynamic limit – a novel notion that the author and his collaborators have dubbed the finite-component system phase transition. As such, the results gathered in this book will open promising new avenues in our understanding and exploration of quantum critical phenomena.

Quantum Mechanics for Scientists and Engineers

Автор: David A. B. Miller
Название: Quantum Mechanics for Scientists and Engineers
ISBN: 0521897831 ISBN-13(EAN): 9780521897839
Издательство: Cambridge Academ
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Цена: 99270.00 T
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Описание: By relating the principles of quantum mechanics to the practical applications in engineering, physics, and nanotechnology, students will develop an understanding of theoretical concepts through examples of nanostructured materials, optics, and semiconductor devices. The book focuses on students` problem solving skills in worked examples and more than 160 homework problems.

Quantum Statistical Mechanics: Selected Works of N N Bogolubov

Автор: Bogolubov N. N. Jr.
Название: Quantum Statistical Mechanics: Selected Works of N N Bogolubov
ISBN: 9814612510 ISBN-13(EAN): 9789814612517
Издательство: World Scientific Publishing
Цена: 110880.00 T
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Описание: In this book we have solved the complicated problem of constructing upper bounds for many-time averages for the case of a fairly broad class of model systems with four-fermion interaction.


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