Description

Book Synopsis
The geometric formulation of autonomous Hamiltonian mechanics in the terms of symplectic and Poisson manifolds is generally accepted. The literature on this subject is extensive. The present book provides the geometric formulation of non-autonomous mechanics in a general setting of time-dependent coordinate and reference frame transformations. This formulation of mechanics as like as that of classical field theory lies in the framework of general theory of dynamic systems, and Lagrangian and Hamiltonian formalisms on fiber bundles. The reader will find a strict mathematical exposition of non-autonomous dynamic systems, Lagrangian and Hamiltonian non-relativistic mechanics, relativistic mechanics, quantum non-autonomous mechanics, together with a number of advanced models — superintegrable systems, non-autonomous constrained systems, theory of Jacobi fields, mechanical systems with time-dependent parameters, non-adiabatic Berry phase theory, instantwise quantization, and quantization relative to different reference frames.

Table of Contents
Dynamic Equations; Lagrangian Mechanics; Hamiltonian Mechanics; Algebraic Quantization; Geometric Quantization; Constrained Systems; Integrable Hamiltonian Systems; Jacobi Fields; Systems with Parameters: Holonomy Operators; Relativistic Mechanics.

Geometric Formulation Of Classical And Quantum

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A Hardback by Giovanni Giachetta, Luigi Mangiarotti, Gennadi A Sardanashvily

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    View other formats and editions of Geometric Formulation Of Classical And Quantum by Giovanni Giachetta

    Publisher: World Scientific Publishing Co Pte Ltd
    Publication Date: 12/10/2010
    ISBN13: 9789814313728, 978-9814313728
    ISBN10: 9814313726

    Description

    Book Synopsis
    The geometric formulation of autonomous Hamiltonian mechanics in the terms of symplectic and Poisson manifolds is generally accepted. The literature on this subject is extensive. The present book provides the geometric formulation of non-autonomous mechanics in a general setting of time-dependent coordinate and reference frame transformations. This formulation of mechanics as like as that of classical field theory lies in the framework of general theory of dynamic systems, and Lagrangian and Hamiltonian formalisms on fiber bundles. The reader will find a strict mathematical exposition of non-autonomous dynamic systems, Lagrangian and Hamiltonian non-relativistic mechanics, relativistic mechanics, quantum non-autonomous mechanics, together with a number of advanced models — superintegrable systems, non-autonomous constrained systems, theory of Jacobi fields, mechanical systems with time-dependent parameters, non-adiabatic Berry phase theory, instantwise quantization, and quantization relative to different reference frames.

    Table of Contents
    Dynamic Equations; Lagrangian Mechanics; Hamiltonian Mechanics; Algebraic Quantization; Geometric Quantization; Constrained Systems; Integrable Hamiltonian Systems; Jacobi Fields; Systems with Parameters: Holonomy Operators; Relativistic Mechanics.

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