Introduction to Stochastic Thermodynamics -  Naoto Shiraishi

Introduction to Stochastic Thermodynamics (eBook)

From Basic to Advanced
eBook Download: PDF
2023 | 1. Auflage
XIV, 443 Seiten
Springer Nature Singapore (Verlag)
978-981-19-8186-9 (ISBN)
Systemvoraussetzungen
128,39 inkl. MwSt
  • Download sofort lieferbar
  • Zahlungsarten anzeigen

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.



Naoto Shiraishi is an associate professor at the College of Arts and Science, The University of Tokyo. His main focus is on fundamentals of statistical mechanics. He received his Bachelor, Master and Ph.D. from The University of Tokyo in 2012, 2014 and 2017, respectively. He was a Postdoctoral Fellow with the Research Fellowship for Young Scientists (PDF) program at Keio University in 2017-2019, and an associate professor at the Department of Physics, Gakushuin University in 2019-2022. He has served in the current position since 2022. During his Ph.D. studies, he received the JSPS Research Fellowship for Young Scientists (DC1). He also received the 2018 Young Scientist Award from the Physical Society of Japan for his outstanding contributions to non-equilibrium thermodynamics.


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 backgroundin 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.
Erscheint lt. Verlag 8.5.2023
Reihe/Serie Fundamental Theories of Physics
Zusatzinfo XIV, 443 p. 69 illus., 46 illus. in color.
Sprache englisch
Themenwelt Mathematik / Informatik Mathematik Statistik
Mathematik / Informatik Mathematik Wahrscheinlichkeit / Kombinatorik
Naturwissenschaften Biologie
Naturwissenschaften Physik / Astronomie Angewandte Physik
Naturwissenschaften Physik / Astronomie Festkörperphysik
Naturwissenschaften Physik / Astronomie Quantenphysik
Naturwissenschaften Physik / Astronomie Thermodynamik
Schlagworte Attainability of the Carnot Engine • Coarse-Grained Autonomous Carnot Engine • Detailed Fluctuation Theorem • Entropy Production • fluctuation-dissipation theorem • Fluctuation Theorem • Foundation of Stochastic Thermodynamics • Markov Jump Processes • Review of Information Thermodynamics • Stationary Free Energy Transducers • Universal Trade-Off Relation
ISBN-10 981-19-8186-8 / 9811981868
ISBN-13 978-981-19-8186-9 / 9789811981869
Haben Sie eine Frage zum Produkt?
PDFPDF (Wasserzeichen)

DRM: Digitales Wasserzeichen
Dieses eBook enthält ein digitales Wasser­zeichen und ist damit für Sie persona­lisiert. Bei einer missbräuch­lichen Weiter­gabe des eBooks an Dritte ist eine Rück­ver­folgung an die Quelle möglich.

Dateiformat: PDF (Portable Document Format)
Mit einem festen Seiten­layout eignet sich die PDF besonders für Fach­bücher mit Spalten, Tabellen und Abbild­ungen. Eine PDF kann auf fast allen Geräten ange­zeigt werden, ist aber für kleine Displays (Smart­phone, eReader) nur einge­schränkt geeignet.

Systemvoraussetzungen:
PC/Mac: Mit einem PC oder Mac können Sie dieses eBook lesen. Sie benötigen dafür einen PDF-Viewer - z.B. den Adobe Reader oder Adobe Digital Editions.
eReader: Dieses eBook kann mit (fast) allen eBook-Readern gelesen werden. Mit dem amazon-Kindle ist es aber nicht kompatibel.
Smartphone/Tablet: Egal ob Apple oder Android, dieses eBook können Sie lesen. Sie benötigen dafür einen PDF-Viewer - z.B. die kostenlose Adobe Digital Editions-App.

Buying eBooks from abroad
For tax law reasons we can sell eBooks just within Germany and Switzerland. Regrettably we cannot fulfill eBook-orders from other countries.

Mehr entdecken
aus dem Bereich