The Physics of Laser Plasmas and Applications - Volume 1 by Hideaki Takabe (Author)
- Publisher: PHYSICS
- Availability: In Stock
- SKU: 49465
- Number of Pages: 394
Rs.890.00
Rs.1,195.00
Tags: academic laser research , advanced laser physics , best books , Best Price , Best Selling Books , energy confinement , experimental plasma physics , extreme light-matter interaction , femtosecond laser pulses , fusion energy research , Hideaki Takabe , high energy density physics , high field science , high-intensity laser physics , inertial confinement fusion , ion acceleration , laser applications , laser beam interaction , laser fusion experiments , laser matter interaction , Laser plasma physics , laser-driven acceleration , laser-induced ionization , laser-induced plasma , laser-plasma simulation , laser-target interaction , nonlinear optics , nuclear fusion physics , Online Bookshop , optical field ionization , particle acceleration , photon-matter interaction , physics for graduate students , physics of fusion , plasma diagnostics , plasma energy research , plasma wave excitation , plasma-based acceleration , radiation transport , science of laser heating , springer laser series , Springer plasma series , theoretical plasma physics , ultra-intense lasers , x-ray laser generation
π Title Name: The Physics of Laser Plasmas and Applications - Volume 1: Physics of Laser Matter Interaction
βοΈ Author: Hideaki Takabe
π¦ Quality: Black White Pakistan Print
π Series: Springer Series in Plasma Science and Technology
πΉ Introduction:
This volume presents a comprehensive insight into the physics of laser-matter interactions, exploring fundamental plasma principles driven by high-intensity laser beams and their emerging applications across multiple scientific disciplines.
π Key Points:
-
Covers theoretical and experimental principles of laser-plasma interactions.
-
Discusses ultrafast phenomena and extreme energy densities.
-
Explains inertial confinement fusion and related advanced energy research.
-
Includes laser applications in particle acceleration and high-field physics.
-
Part of the Springer Series, offering academically rich, research-oriented content.
π Conclusion:
An essential reference for physicists, researchers, and graduate students, this book bridges theory with application in modern plasma science, particularly in high-energy laser systems and their vast potential in future technologies.