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The physics of plasmas is an extremely rich and complex subject as the variety of topics addressed in this book demonstrates. This richness and complexity demands new and powerful techniques for investigating plasma physics. An outgrowth from his graduate course teaching, now with corrections, Tajima's text provides not only a lucid introduction to computational plasma physics, but also offers the reader many examples of the way numerical modeling, properly handled, can provide valuable physical understanding of the nonlinear aspects so often encountered in both laboratory and astrophysical plasmas. Included here are computational methods for modern nonlinear physics as applied to hydrodynamic turbulence, solitons, fast reconnection of magnetic fields, anomalous transports, dynamics of the sun, and more. The text contains examples of problems now solved using computational techniques including those concerning finite-size particles, spectral techniques, implicit differencing, gyrokinetic approaches, and particle simulation.
This text investigates the application of numerical modeling and computational techniques to solve complex nonlinear problems in plasma physics. Toshiki Tajima, drawing from his extensive experience in graduate-level instruction, presents a rigorous framework for applying computational methods to both laboratory fusion research and astrophysical phenomena. The book synthesizes theoretical physics with practical numerical approaches to address the inherent complexities of plasma dynamics.
What You Will Find
Experts recognize this work as a foundational text for graduate students and researchers seeking to bridge the gap between theoretical plasma physics and numerical simulation. Readers frequently note the technical density of the prose, which requires a strong background in advanced mathematics and physics to fully utilize the provided methodologies.
Page Count:
525
Publication Date:
1988-01-01
Publisher:
Addison-Wesley
ISBN-10:
0201164116
ISBN-13:
9780201164114
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