Quantum Optics in Phase Space 2001
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(特價599)Quantum Optics in Phase Space 2001 <JW> 3-527-29435-X W.P.SCHLEICH 9783527294350
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1900
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611
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Thermodynamics and Introductory Statistical Mechanics 2004
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<特價299>Thermodynamics and Introductory Statistical Mechanics 2004 (JW) 0-471-47459-2 B.LINDER 9780471474593
原價:
1100
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305
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795元
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Application-Driven Quantum and Statistical Physics Vol.3
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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. Part I describes how the quantum statistics of fermions and bosons differ and under what condition they can merge into the classical-particle-statistics framework seen in Volume 2. This section also describes the fundamentals of conductors, semiconductors, superconductors, superfluids and Bose–Einstein condensates. Part II introduces time-dependent transitions between quantum states. The time evolution of a simple two-level model gives the minimum background necessary to understand the principles behind lasers and their numerous applications. Time-dependent perturbation theory is also covered, as well as standard approaches to the scattering of massive particles. A semi-classical treatment of electromagnetic field–matter interaction is described with illustrations taken from a variety of processes such as phonon scattering, charge distribution or spin densities. The third and last part of the book gives a brief overview of quantum electrodynamics with applications to photon absorption or emission spectroscopies and a range of scattering regimes. There follows a short introduction to the role of multiphoton processes in quantum entanglement based experiments.
Sample Chapter(s)
Preface
1. The Ideal Quantum Gases
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Contents:
Quantum Statistics:
The Ideal Quantum Gases
Fermion Gases
Boson Gases
Time-Dependent Transitions:
Two-Level Couplings
Time-Dependent Perturbation Theory
Standard Approaches to Scattering
Photons:
From Electromagnetic Fields to Photons
From One-Photon to Multiphoton Processes
Readership: Undergraduate students who need a concise introduction to quantum and statistical physics. Graduate students who want to return and learn about the subject from a different perspective.
原價:
1454
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1381
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73元
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Quantum Physics (1版)
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Quantum physics allows us to understand the nature of the physical phenomena which govern the behavior of solids, semi-conductors, lasers, atoms, nuclei, subnuclear particles and light. In Quantum Physics, Le Bellac provides a thoroughly modern approach to this fundamental theory. Throughout the book, Le Bellac teaches the fundamentals of quantum physics using an original approach which relies primarily on an algebraic treatment and on the systematic use of symmetry principles. In addition to the standard topics such as one-dimensional potentials, angular momentum and scattering theory, the reader is introduced to more recent developments at an early stage. These include a detailed account of entangled states and their applications, the optical Bloch equations, the theory of laser cooling and of magneto-optical traps, vacuum Rabi oscillations and an introduction to open quantum systems. This is a textbook for a modern course on quantum physics, written for advanced undergraduate and graduate students.
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Quantum Heterostructures Microelectronics and Optoelectronics (1版)
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Quantum Heterostructures provides a detailed description of the key physical and engineering principles of quantum semiconductor heterostructures. Blending important concepts from physics, materials science, and electrical engineering, it also explains clearly the behavior and operating features of modern microelectronic and optoelectronic devices. The authors begin by outlining the trends that have driven development in this field, most importantly the need for high-performance devices in computer, information, and communications technologies. They then describe the basics of quantum nanoelectronics, including various transport mechanisms. In the latter part of the book, they cover novel microelectronic devices, and optical devices based on quantum heterostructures. The book contains many homework problems and is suitable as a textbook for undergraduate and graduate courses in electrical engineering, physics, or materials science. It will also be of great interest to those involved in research or development in microelectronic or optoelectronic devices.
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1750
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298
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ELECTRONIC PACKAGING Design, Materials, Process & Reliability
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428
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PRINCIPLES OF QUANTUM MECHANICS (2版)
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【原文書】
書名:Principles of Quantum Mechanics 2/e
作者:R. Shankar
出版社:Kluwer Academic Plenum Publishers
ISBN:9780306447907
About this Textbook
Reviews from the First Edition:
"An excellent text … The postulates of quantum mechanics and the mathematical underpinnings are discussed in a clear, succinct manner." (American Scientist)
"No matter how gently one introduces students to the concept of Dirac’s bras and kets, many are turned off. Shankar attacks the problem head-on in the first chapter, and in a very informal style suggests that there is nothing to be frightened of." (Physics Bulletin)
Reviews of the Second Edition:
"This massive text of 700 and odd pages has indeed an excellent get-up, is very verbal and expressive, and has extensively worked out calculational details---all just right for a first course. The style is conversational, more like a corridor talk or lecture notes, though arranged as a text. … It would be particularly useful to beginning students and those in allied areas like quantum chemistry." (Mathematical Reviews)
R. Shankar has introduced major additions and updated key presentations in this second edition of Principles of Quantum Mechanics. New features of this innovative text include an entirely rewritten mathematical introduction, a discussion of Time-reversal invariance, and extensive coverage of a variety of path integrals and their applications. Additional highlights include:
- Clear, accessible treatment of underlying mathematics
- A review of Newtonian, Lagrangian, and Hamiltonian mechanics
- Student understanding of quantum theory is enhanced by separate treatment of mathematical theorems and physical postulates
- Unsurpassed coverage of path integrals and their relevance in contemporary physics
The requisite text for advanced undergraduate- and graduate-level students, Principles of Quantum Mechanics, Second Edition is fully referenced and is supported by many exercises and solutions. The book’s self-contained chapters also make it suitable for independent study as well as for courses in applied disciplines.
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PLASTIC BENDING THEORY AND APPLICATIONS
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From the point of view of mechanics, this monograph systematically demonstrates the theory of plastic bending and its engineering applications; most of the contents of the book are based on the authors' research in the past decade. The monograph not only expounds the contributions of the authors to the fundamental theory of plastic bending, but also presents various applications of the theory in sheet metal forming, particularly in the analysis and prediction of springback and wrinkling of strips and plates subjected to bending or stamping. In addition to theoretical modelling, attention has also been paid to the development of related numerical methods; comparisons with experimental results are also presented.
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Introduction to Time-Dependent Quantum Mechanics with Python
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Computational spectroscopy and computational quantum chemical dynamics is a vast field in physical chemistry. Significant part of this field is developed based on the concepts of time-dependent quantum mechanics and its numerical implementations.
This book gives an introduction to the Time-Dependent Quantum Chemistry for use with any introductory college/university course in optics, spectroscopy, kinetics, dynamics, or experimental physical chemistry or chemical physics of the kind usually taken by undergraduate and graduate students in physical chemistry. In this book, different concepts of time-dependent quantum mechanics are systematically presented by first giving emphasis on the contrasting viewpoint of classical and quantum mechanical motion of a particle, then by demonstrating the ways to find classical flavour in quantum dynamics, thereafter by formally defining the wavepacket which represents a quantum particle and finally by demonstrating numerical methods to explore the wavepacket dynamics in one dimension. Along with the analytical theory, accompanying Python chapters in this book take readers to a hands-on tour with Python programming by first giving them a quick introduction to the Python programming, then by introducing the position-space grid representation of the wavefunction, thereafter, by making them familiarized with the Fourier transform to represent the discretized wavefunction in momentum space, subsequently by showing the Python-based methodologies to express Hamiltonian operator in matrix form and finally by demonstrating the entire Python program which solves the wavepacket dynamics in one dimension under influence of time-independent Hamiltonian following split-operator approach.
Rigorous class-testing of the presented lecture notes at the Indian Institute of Science, GITAM University and at NPTEL platform reveals that physical chemistry students, after thoroughly going through all chapters, not only develop an in-depth understanding of the wavepacket dynamics and its numerical implementations, but also start successfully writing their own Python code for solving any one dimensional wavepacket dynamics problem.
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原價:
3390
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現省:
169元
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CLASSICAL AND QUANTUM MECHANICS WITH LIE ALGEBRAS
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How to see physics in its full picture? This book offers a new approach: start from math, in its simple and elegant tools: discrete math, geometry, and algebra, avoiding heavy analysis that might obscure the true picture. This will get you ready to master a few fundamental topics in physics: from Newtonian mechanics, through relativity, towards quantum mechanics.
Thanks to simple math, both classical and modern physics follow and make a complete vivid picture of physics. This is an original and unified point of view to highlighting physics from a fresh pedagogical angle.
Each chapter ends with a lot of relevant exercises. The exercises are an integral part of the chapter: they teach new material and are followed by complete solutions. This is a new pedagogical style: the reader takes an active part in discovering the new material, step by step, exercise by exercise.
The book could be used as a textbook in undergraduate courses such as Introduction to Newtonian mechanics and special relativity, Introduction to Hamiltonian mechanics and stability, Introduction to quantum physics and chemistry, and Introduction to Lie algebras with applications in physics.
Sample Chapter(s)
1 - Introduction to Newtonian Mechanics: Energy and Work
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Contents:
Introduction to Newtonian Physics:
Introduction to Newtonian Mechanics: Energy-Work
Angular Momentum and Its Conservation
Stability in Geometrical Optics
Towards Stability in Classical Mechanics:
Poincare Stability in Classical Mechanics
Cantor Set and Its Applications
Is The Universe Infinite?
Binary Trees and Chaos Theory
The Binomial Formula and Quantum Statistical Mechanics:
Newton's Binomial and Trinomial Formulas
Applications in Quantum Statistical Mechanics
Introduction to Relativity:
Introduction to Special Relativity: Momentum-Energy
Towards General Relativity: Spacetime and Its Coordinates
Introduction to Quantum Physics and Chemistry:
Introduction to Quantum Mechanics: Energy Levels and Spin
Quantum Chemistry: Electronic Structure
Introduction to Lie Algebras and Their Applications:
Jordan Form and Algebras
Design Your Lie Algebra
Ideals and Isomorphism Theorems
Exercises: Solvability and Nilpotency
Nilpotency and Engel's Theorems
Weight Space and Lie's Lemma and Theorem
Cartan's Criterion for Solvability
Killing Form and Simple Ideal Decomposition
Hamiltonian Mechanics: Energy and Angular Momentum
Lie Algebras in Quantum Mechanics and Special Relativity
Appendix: Background in Calculus:
Functions and Their Derivatives
Polynomials and Partial Derivatives
Matrices and Their Eigenvalues
References
Index
Readership: Undergraduate and graduate students in Mathematics, Physics, and Chemistry.
原價:
2363
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2245
現省:
118元
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Introductory Quantum Mechanics with MATLAB: For Atoms, Molecules, Clusters, and Nanocrystals <JW>
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電子書 Introductory Quantum Mechanics with MATLAB: For Atoms, Molecules, Clusters, and Nanocrystals Chelikowsky 9783527409266 2018
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Quantum Mechanics in Phase Space An Overview with Swlected Papers 2005 (WS) 981-02-384-0
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