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Scattering Matrix Approach To Non-Stationary Quantum Transpo

The aim of this book is to introduce the basic elements of the scattering matrix approach to transport phenomena in dynamical quantum;

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Quantum Chaos

This book introduces the quantum mechanics of classically chaotic systems, or quantum chaos for short. The author's philosophy has been to;

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Quantum Electrodynamics

variable numbers of particles. Basics of the Fock space and quantum electrodynamics are covered with an emphasis on renormalization. In contrast to;

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Elementary Quantum Mechanics in One Dimension

quantum system. Robert Gilmore's innovative approach to Schrodinger's Equation offers new insight into quantum mechanics at an elementary level;

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Elementary Quantum Mechanics in One Dimension

quantum system. Robert Gilmore's innovative approach to Schrodinger's Equation offers new insight into quantum mechanics at an elementary level;

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Principles of Quantum Scattering Theory

intuition and mathematical rigour to present various selected principles of quantum scattering theory. As always in physics, experiment should be;

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Towards Infrared Finite S-matrix in Quantum Field Theory

, such as QED and gravity, the conventional S-matrix has not been well defined due to the infrared divergence, and infrared dynamics thus needs;

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Towards Infrared Finite S-matrix in Quantum Field Theory

, such as QED and gravity, the conventional S-matrix has not been well defined due to the infrared divergence, and infrared dynamics thus needs;

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Heisenberg's Quantum Mechanics

This book provides a detailed account of quantum theory with a much greater emphasis on the Heisenberg equations of motion and the matrix;

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Heisenberg's Quantum Mechanics

This book provides a detailed account of quantum theory with a much greater emphasis on the Heisenberg equations of motion and the matrix;

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Generated Dynamics of Markov and Quantum Processes

processes are relaxations to a single stationary state. Quantum processes apply to systems where all variables, that control reversibility, are;

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Direct and Inverse Scattering for the Matrix Schrödinger Equation

of researchers including those working in quantum graphs and scattering on graphs. The theory presented is illustrated with various explicit examples to;

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Direct and Inverse Scattering for the Matrix Schroedinger Equation

of researchers including those working in quantum graphs and scattering on graphs. The theory presented is illustrated with various explicit examples to;

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Variantional Principles

show how variational principles may be employed to determine the discrete eigenvalues for stationary state problems and to illustrate how to;

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Introduction To Spectral Theory And Inverse Problem On Asymptotically Hyperbolic Manifolds

key point of the approach is the generalized Fourier transform, which serves as the basic tool to introduce and analyse the time-dependent;

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Spectral Methods in Quantum Field Theory

quantum vacuum. These methods will provide e?cient and reliable solutions to a - riety of problems in quantum ?eld theory. Our approach will also;

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Lectures on Matrix Field Theory

These lecture notes provide a systematic introduction to matrix models of quantum field theories with non-commutative and fuzzy geometries;

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Quantum Theory of Scattering

This volume addresses the broad formal aspects and applications of the quantum theory of scattering in atomic and nuclear collisions. An;

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Quantum Mechanics

principle has been described in light of this. A chapter is dedicated to mathematical structure of Quantum Mechanics followed by applications to one;

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Scattering Theory

-dependent approach to the subject is emphasized, starting with the use of time-dependent formalism to define all of the basic concepts and the;

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Cambridge Monographs on Particle Physics, Nuclear Physics and Cosmology

This book provides a pedagogical introduction to the perturbative and non-perturbative aspects of quantum chromodynamics (QCD). Introducing;

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Cambridge Monographs on Particle Physics, Nuclear Physics and Cosmology

This book provides a pedagogical introduction to the perturbative and non-perturbative aspects of quantum chromodynamics (QCD). Introducing;

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Electron-Atom Scattering

This is an introductory approach to the electron-atom scattering theoretical formulation. It focuses on the mathematical tools and on the;

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Quantum Transport in Mesoscopic Systems

maximum-entropy approach. Shannon's information entropy is maximised, subject to the symmetries and constraints which are physically relevant;

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Green's Functions and Ordered Exponentials

fields and non-constant electric fields. Applications to problems in potential theory and quantum field theory are covered, along with;

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Green's Functions and Ordered Exponentials

fields and non-constant electric fields. Applications to problems in potential theory and quantum field theory are covered, along with;

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Invariant Imbedding T-matrix Method for Light Scattering by Nonspherical and Inhomogeneous Particles

forward as a resource and a tool for understanding the T-Matrix method in relation to light scattering. The text explores concepts ranging from;

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