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An introduction to stochastic thermo...
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Shiraishi, Naoto.
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An introduction to stochastic thermodynamics = from basic to advanced /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
An introduction to stochastic thermodynamics/ by Naoto Shiraishi.
其他題名:
from basic to advanced /
作者:
Shiraishi, Naoto.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
1 online resource (xiv, 443 p.) :ill., digital ;24 cm.
內容註:
Background -- Stochastic Processes -- Stochastic Thermodynamics and Fluctuation Theorems -- Fluctuation-Theorem-Type Equalities -- Information Thermodynamics and Beyond -- Large Deviation and Rate Function -- Some Results on One-Dimensional Overdamped Langevin Systems -- Quantum Fluctuation Theorem and Some Techniques in Quantum Information Theory -- Maximum Efficiency of Stationary Autonomous Engines -- Implementation of Quantum Operation by Autonomous Transient Process -- Power and Efficiency: Phenomenological Approach -- Universal Trade-Off Relation Between Efficiency and Power -- Thermodynamic Uncertainty Relation -- Bound of Speed in Quantum Non-Markovian Systems -- Speed Limit for State Transformation -- Conclusion.
Contained By:
Springer Nature eBook
標題:
Thermodynamics. -
電子資源:
https://doi.org/10.1007/978-981-19-8186-9
ISBN:
9789811981869
An introduction to stochastic thermodynamics = from basic to advanced /
Shiraishi, Naoto.
An introduction to stochastic thermodynamics
from basic to advanced /[electronic resource] :by Naoto Shiraishi. - Singapore :Springer Nature Singapore :2023. - 1 online resource (xiv, 443 p.) :ill., digital ;24 cm. - Fundamental theories of physics,v. 2122365-6425 ;. - Fundamental theories of physics ;v. 212..
Background -- Stochastic Processes -- Stochastic Thermodynamics and Fluctuation Theorems -- Fluctuation-Theorem-Type Equalities -- Information Thermodynamics and Beyond -- Large Deviation and Rate Function -- Some Results on One-Dimensional Overdamped Langevin Systems -- Quantum Fluctuation Theorem and Some Techniques in Quantum Information Theory -- Maximum Efficiency of Stationary Autonomous Engines -- Implementation of Quantum Operation by Autonomous Transient Process -- Power and Efficiency: Phenomenological Approach -- Universal Trade-Off Relation Between Efficiency and Power -- Thermodynamic Uncertainty Relation -- Bound of Speed in Quantum Non-Markovian Systems -- Speed Limit for State Transformation -- Conclusion.
This book presents the fundamentals of stochastic thermodynamics, one of the most central subjects in non-equilibrium statistical mechanics. It also explores many recent advances, e.g., in information thermodynamics, the thermodynamic uncertainty relation, and the trade-off relation between efficiency and power. The content is divided into three main parts, the first of which introduces readers to fundamental topics in stochastic thermodynamics, e.g., the basics of stochastic processes, the fluctuation theorem and its variants, information thermodynamics, and large deviation theory. In turn, parts two and three explore advanced topics such as autonomous engines (engines not controlled externally) and finite speed engines, while also explaining the key concepts from recent stochastic thermodynamics theory that are involved. To fully benefit from the book, readers only need an undergraduate-level background in statistical mechanics and quantum mechanics; no background in information theory or stochastic processes is needed. Accordingly, the book offers a valuable resource for early graduate or higher-level readers who are unfamiliar with this subject but want to keep up with the cutting-edge research in this field. In addition, the author's vivid descriptions interspersed throughout the book will help readers grasp 'living' research developments and begin their own research in this field.
ISBN: 9789811981869
Standard No.: 10.1007/978-981-19-8186-9doiSubjects--Topical Terms:
517304
Thermodynamics.
LC Class. No.: QC311
Dewey Class. No.: 536.7
An introduction to stochastic thermodynamics = from basic to advanced /
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Background -- Stochastic Processes -- Stochastic Thermodynamics and Fluctuation Theorems -- Fluctuation-Theorem-Type Equalities -- Information Thermodynamics and Beyond -- Large Deviation and Rate Function -- Some Results on One-Dimensional Overdamped Langevin Systems -- Quantum Fluctuation Theorem and Some Techniques in Quantum Information Theory -- Maximum Efficiency of Stationary Autonomous Engines -- Implementation of Quantum Operation by Autonomous Transient Process -- Power and Efficiency: Phenomenological Approach -- Universal Trade-Off Relation Between Efficiency and Power -- Thermodynamic Uncertainty Relation -- Bound of Speed in Quantum Non-Markovian Systems -- Speed Limit for State Transformation -- Conclusion.
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This book presents the fundamentals of stochastic thermodynamics, one of the most central subjects in non-equilibrium statistical mechanics. It also explores many recent advances, e.g., in information thermodynamics, the thermodynamic uncertainty relation, and the trade-off relation between efficiency and power. The content is divided into three main parts, the first of which introduces readers to fundamental topics in stochastic thermodynamics, e.g., the basics of stochastic processes, the fluctuation theorem and its variants, information thermodynamics, and large deviation theory. In turn, parts two and three explore advanced topics such as autonomous engines (engines not controlled externally) and finite speed engines, while also explaining the key concepts from recent stochastic thermodynamics theory that are involved. To fully benefit from the book, readers only need an undergraduate-level background in statistical mechanics and quantum mechanics; no background in information theory or stochastic processes is needed. Accordingly, the book offers a valuable resource for early graduate or higher-level readers who are unfamiliar with this subject but want to keep up with the cutting-edge research in this field. In addition, the author's vivid descriptions interspersed throughout the book will help readers grasp 'living' research developments and begin their own research in this field.
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