Foundations of High-Energy-Density Physics
High-energy-density physics explores the dynamics of matter at extreme conditions. This encompasses temperatures and densities far greater than we experience on Earth. It applies to normal stars, exploding stars, active galaxies, and planetary interiors. High-energy-density matter is found on Earth in the explosion of nuclear weapons and in laboratories with high-powered lasers or pulsed-power machines. The physics explored in this book is the basis for large-scale simulation codes needed to interpret experimental results whether from astrophysical observations or laboratory-scale experiments. The key elements of high-energy-density physics covered are gas dynamics, ionization, thermal energy transport, and radiation transfer, intense electromagnetic waves, and their dynamical coupling. Implicit in this is a fundamental understanding of hydrodynamics, plasma physics, atomic physics, quantum mechanics, and electromagnetic theory. Beginning with a summary of the topics and exploring the major ones in depth, this book is a valuable resource for research scientists and graduate students in physics and astrophysics.
- Brings together the wide range of physics principles found in high-energy-density physics
- Expands the documentation supporting radiation hydrodynamics simulation codes
- A modern technical resource for both students and experienced researchers
- A complete source for learning about the different branches of physics, from basic concepts to in-depth explanations
Product details
No date availableAdobe eBook Reader
9781316883662
0 pages
0kg
186 b/w illus.
Table of Contents
- Preface
- 1. Introduction
- 2. Characteristics of high-energy-density matter
- 3. Fundamental microphysics of ionized gases
- 4. Ionization
- 5. Entropy and the equation of state
- 6. Hydrodynamics
- 7. Thermal energy transport
- 8. Radiation and radiative transfer
- 9. Transition rates and optical coefficients
- 10. Radiation hydrodynamics
- 11. Magnetohydrodynamics
- 12. Electromagnetic wave-matter interactions
- References
- Index.