Statistical Mechanics for Athermal Fluctuation by Kiyoshi Kanazawa
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Statistical Mechanics for Athermal Fluctuation

Statistical Mechanics for Athermal Fluctuation


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About the Book

Introduction to Physics of Fluctuation.- Markovian Stochastic Processes.- Kinetic Theory for Dilute Gas.- Langevin Equation and its Microscopic Derivation.- Stochastic Calculus for the Single-Trajectory Analysis.- Stochastic Energetics for Langevin Dynamics.- Microscopic Derivation of Linear Non-Gaussian Langevin Equation.- Analytical Solution to Non-linear Non-Gaussian Langevin Equation.- Stochastic Energetics for Non-Gaussian Stochastic Dynamics.- Energy Transport between Athermal Systems.- Energy Pumping from Athermal Systems.- Conclusion.


About the Author:

Kiyoshi Kanazawa has been an assistant professor at Tokyo Institute of Technology since April 2016. He received his bachelor's degree in physics from the University of Tokyo in March 2010 and completed his master's degree at the Yukawa Institute for Theoretical Physics at Kyoto University in April 2012. He received his doctorate from Kyoto University in March 2015 for his study on statistical mechanics and stochastic thermodynamics for athermal fluctuation from the viewpoint of non-Gaussian stochastic processes. He is currently investigating the microstructure of various non-physical systems, such as financial-market and biological fluctuation, using data analyses and theory. He is focusing his considerable efforts on developing kinetic theory for non-physical, many-body systems in order to understand various macroscopic phenomena in microscopic dynamics. He received the "Young Scientist Award of the Physical Society of Japan" from the Physical Society of Japan in March

2016.


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Product Details
  • ISBN-13: 9789811063305
  • Publisher: Springer
  • Publisher Imprint: Springer
  • Edition: Springer Theses
  • Language: English
  • Returnable: Y
  • Spine Width: 14 mm
  • Weight: 566 gr
  • ISBN-10: 9811063303
  • Publisher Date: 21 Dec 2017
  • Binding: Hardback
  • Height: 234 mm
  • No of Pages: 222
  • Series Title: Springer Theses
  • Sub Title: Non-Gaussian Noise in Physics
  • Width: 156 mm


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