Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum states in equilibrium. The author establishes a new formulation of statistical mechanics based on the TPQ states. This formulation allows us to obtain not only mechanical variables but also thermodynamic variables such as entropy and free energy from a single TPQ state. Furthermore, the formulation provides a new physical description in which all fluctuations including thermally driven ones are uniquely identified to be quantum fluctuations.

The use of TPQ formulation has practical advantages in its application to numerical computations and allows for significant reduction in computation cost in numerics. For demonstration purposes, a numerical computation based on TPQ formulation is applied to a frustrated two-dimensional quantum spin model, and the result is also included in this book. 

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Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum states in equilibrium. The author establishes a new formulation of statistical mechanics based on the TPQ states. This formulation allows us to obtain not only mechanical variables but also thermodynamic variables such as entropy and free energy from a single TPQ state. Furthermore, the formulation provides a new physical description in which all fluctuations including thermally driven ones are uniquely identified to be quantum fluctuations.

The use of TPQ formulation has practical advantages in its application to numerical computations and allows for significant reduction in computation cost in numerics. For demonstration purposes, a numerical computation based on TPQ formulation is applied to a frustrated two-dimensional quantum spin model, and the result is also included in this book. 

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Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

by Sho Sugiura
Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

Formulation of Statistical Mechanics Based on Thermal Pure Quantum States

by Sho Sugiura

eBook1st ed. 2017 (1st ed. 2017)

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Overview

This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum states in equilibrium. The author establishes a new formulation of statistical mechanics based on the TPQ states. This formulation allows us to obtain not only mechanical variables but also thermodynamic variables such as entropy and free energy from a single TPQ state. Furthermore, the formulation provides a new physical description in which all fluctuations including thermally driven ones are uniquely identified to be quantum fluctuations.

The use of TPQ formulation has practical advantages in its application to numerical computations and allows for significant reduction in computation cost in numerics. For demonstration purposes, a numerical computation based on TPQ formulation is applied to a frustrated two-dimensional quantum spin model, and the result is also included in this book. 


Product Details

ISBN-13: 9789811015069
Publisher: Springer-Verlag New York, LLC
Publication date: 10/05/2017
Series: Springer Theses
Sold by: Barnes & Noble
Format: eBook
Pages: 73
File size: 2 MB

Table of Contents

Introduction to thermal pure quantum state formulation of statistical mechanics.- Typicality And Ergodicity.- Canonical Thermal Pure Quantum State.- Microcanonical Thermal Pure Quantum State.- Equilibrium State And Entanglement.- Relation Among TPQ States.- Application To Numerical Calculation.- Conclusion.

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