Description

Book Synopsis
This book covers the foundations of classical thermodynamics, with emphasis on the use of differential forms of classical and quantum statistical mechanics, and also on the foundational aspects. In both contexts, a number of applications are considered in detail, such as the general theory of response, correlations and fluctuations, and classical and quantum spin systems. In the quantum case, a self-contained introduction to path integral methods is given. In addition, the book discusses phase transitions and critical phenomena, with applications to the Landau theory and to the Ginzburg-Landau theory of superconductivity, and also to the phenomenon of Bose condensation and of superfluidity. Finally, there is a careful discussion on the use of the renormalization group in the study of critical phenomena.

Table of Contents
Thermodynamics; equilibrium classical statistical mechanics; spin Hamiltonians 1 - classical; equilibrium quantum statistical mechanics; identical particles in quantum statistical mechanics; spin Hamiltonians 2 - quantum; phase transitions and critical phenomena; model systems, scaling laws and mean field theories; superconductivity and superfluidity; the renormalization group and critical phenomena.

Statistical Mechanics: An Intermediate Course

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    A Paperback / softback by Elisa Ercolessi, Giuseppe Morandi, Franco Napoli

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      View other formats and editions of Statistical Mechanics: An Intermediate Course by Elisa Ercolessi

      Publisher: World Scientific Publishing Co Pte Ltd
      Publication Date: Publication Date: 18/05/2001
      ISBN13: 9789810244774, 978-9810244774
      ISBN10: 9810244770

      Description

      Book Synopsis
      This book covers the foundations of classical thermodynamics, with emphasis on the use of differential forms of classical and quantum statistical mechanics, and also on the foundational aspects. In both contexts, a number of applications are considered in detail, such as the general theory of response, correlations and fluctuations, and classical and quantum spin systems. In the quantum case, a self-contained introduction to path integral methods is given. In addition, the book discusses phase transitions and critical phenomena, with applications to the Landau theory and to the Ginzburg-Landau theory of superconductivity, and also to the phenomenon of Bose condensation and of superfluidity. Finally, there is a careful discussion on the use of the renormalization group in the study of critical phenomena.

      Table of Contents
      Thermodynamics; equilibrium classical statistical mechanics; spin Hamiltonians 1 - classical; equilibrium quantum statistical mechanics; identical particles in quantum statistical mechanics; spin Hamiltonians 2 - quantum; phase transitions and critical phenomena; model systems, scaling laws and mean field theories; superconductivity and superfluidity; the renormalization group and critical phenomena.

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