
As an Amazon Associate and affiliate partner, Menrva Books earns from qualifying purchases. Learn more
The book is devoted to the physics of plasma at high density, which has been compressed so strongly that the effects of interparticle interactions and non-ideality govern its behavior. Interest in this non-traditional plasma has been generated in recent years when states of matter with high concentration of energy became accessible experimentally as the basis of modern technologies and facilities. The greatest part of the matter in the Universe is in this exotic state. In this book, the methods of generation and diagnostics of strongly coupled plasmas are presented, along with the main theoretical methods and experimental results on thermodynamical, kinetic and optical properties. Particular attention is given to fast developing modern directions of strongly coupled plasma physics such as metallization of dielectrics and dielectrization of metals, non-neutral plasmas, dusty plasmas and their crystallization. The book is written for physicists and astrophysicists, engineers, and material scientists.
This text investigates the physical properties and behavioral dynamics of high-density, strongly coupled plasma where interparticle interactions dominate. The authors, prominent researchers in the field of high-energy density physics, synthesize theoretical frameworks with experimental data to explain how these states of matter function under extreme conditions. By examining both the thermodynamic and kinetic properties of non-ideal plasmas, the book provides a comprehensive overview of a state of matter that constitutes the majority of the observable universe.
What You Will Find
Experts recognize this monograph as a foundational reference for researchers and engineers working in high-energy density physics and astrophysics. The text is noted for its technical rigor and its ability to bridge the gap between theoretical plasma physics and practical experimental applications.
Page Count:
534
Publication Date:
2007-01-18
Publisher:
Oxford University Press
ISBN-10:
0199299803
ISBN-13:
9780199299805
No comments yet. Be the first to share your thoughts!