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  • © 2020

The Physics of Laser Plasmas and Applications - Volume 1

Physics of Laser Matter Interaction

Authors:

  • Provides basic physics with only essential mathematics for understanding plasma physics to study intense-laser and matter interaction
  • Includes intuitive descriptions without using complicated mathematics, and subsequently provides exact solutions to the equations for further understanding
  • Starts with a diagram showing the relations between the topics addressed, allowing a systematic horizontal comprehension of plasma related fields

Part of the book series: Springer Series in Plasma Science and Technology (SSPST)

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Table of contents (9 chapters)

  1. Front Matter

    Pages i-xix
  2. Introduction

    • Hideaki Takabe
    Pages 1-25
  3. Non-relativistic Lasers

    1. Front Matter

      Pages 1-1
    2. Laser Absorption by Coulomb Collision

      • Hideaki Takabe
      Pages 29-80
    3. Nonlinear Physics of Laser-Plasma Interaction

      • Hideaki Takabe
      Pages 131-163
  4. Relativistic Lasers

    1. Front Matter

      Pages 165-165
    2. Relativistic Laser-Electron Interactions

      • Hideaki Takabe
      Pages 167-202
    3. Relativistic Laser Plasma Interactions

      • Hideaki Takabe
      Pages 203-238
    4. Chaos due to Relativistic Effect

      • Hideaki Takabe
      Pages 287-330
  5. Back Matter

    Pages 373-388

About this book

The series of books discusses the physics of laser and matter interaction, fluid dynamics of high-temperature and high-density compressible plasma, and kinetic phenomena and particle dynamics in laser-produced plasma. The book (Vol.1) gives the physics of intense-laser absorption in matter and/or plasma in non-relativistic and relativistic laser-intensity regime. In many cases, it is explained with clear images of physics so that an intuitive understanding of individual physics is possible for non-specialists.

For intense-laser of 1013-16 W/cm2, the laser energy is mainly absorbed via collisional process, where the oscillation energy is converted to thermal energy by non-adiabatic Coulomb collision with the ions. Collisionless interactions with the collective modes in plasma are also described. The main topics are the interaction of ultra-intense laser and plasma for the intensity near and over 1018W/cm2. In such regime, relativistic dynamics become essential.   

A new physics appears due to the relativistic effects, such as mass correction, relativistic nonlinear force, chaos physics of particle motions, and so on. The book provides clearly the theoretical base for challenging the laser-plasma interaction physics in the wide range of power lasers.

It is suitable as a textbook for upper-undergraduate and graduate students as well as for readers who want to understand the whole physics structure about what happen when an intense-laser irradiates any materials including solids, gas etc. Explaining the physics intuitively without complicated mathematics, it is also a valuable resource for engineering students and researchers as well as for self-study.

Authors and Affiliations

  • Institute of Radiation Physics, Helmholtz Zentrum Dresden Rosendorf, Dresden, Germany

    Hideaki Takabe

About the author

Dr. Hideaki Takabe is a Professor Emeritus at the Institute of Laser Science, Osaka University. He obtained his Ph.D. in the field of laser implosion fusion theory from Osaka University. Following his time at the Max Planck Institute for Plasma Physics and the University of Arizona, he focused on theoretical and computational research in laser fusion and laboratory astrophysics at ILE, Osaka University. After opting for early retirement, he relocated first to the Helmholtz Zentrum Dresden Rossendorf (HZDR) in Dresden and subsequently to the National Taiwan University in Taipei.

His research pursuits encompass a range of disciplines, including plasma physics, laser fusion, computational physics, and laboratory astrophysics. Notably, his early contributions to the field of ablative stabilization of hydrodynamic instabilities have become widely recognized as the Takabe formula. He stands as a trailblazer in the realm of laboratory astrophysics driven by intense lasers. His accomplishments include being recognized as a Fellow of the American Physical Society and receiving prestigious awards such as the Edward Teller Award (from ANS) and the John Dawson Award (from APS).


Bibliographic Information

Buy it now

Buying options

eBook USD 54.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 69.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 99.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access