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This book is on inertial confinement fusion, an alternative way to produce electrical power from hydrogen fuel by using powerful lasers or particle beams. Two huge laser facilities are presently under construction to show that this method works. It involves the compression of tiny amounts (micrograms) of fuel to thousand times solid density and pressures otherwise existing only in the centre of stars. Thanks to advances in laser technology, it is now possible to produce such extreme states of matter in the laboratory. Recent developments have boosted laser intensities again with new possibilities for laser particle accelerators, laser nuclear physics, and fast ignition of fusion targets. This is a reference book for those working on beam plasma physics, be it in the context of fundamental research or applications to fusion energy or novel ultra-bright laser sources. The book combines quite different areas of physics: beam target interaction, dense plasmas, hydrodynamic implosion and instabilities, radiative energy transfer as well as fusion reactions. Particular attention is given to simple and useful modelling, including dimensional analysis and similarity solutions. Both authors have worked in this field for more than 20 years. They want to address in particular those teaching this topic to students and all those interested in understanding the technical basis.
This text investigates the physical principles and technical requirements of inertial confinement fusion as a viable method for electrical power generation. Authors Jürgen Meyer-ter-Vehn and Stefano Atzeni, both veteran researchers with over two decades of experience in the field, synthesize complex data regarding beam-plasma interactions, hydrodynamic implosion, and the creation of hot dense matter. The book provides a structured framework for understanding how laser and particle beam technologies can compress fuel to stellar-level densities, serving as both a pedagogical tool for instructors and a technical reference for practitioners.
What You Will Find
Scope Limits
Experts recognize this work as a foundational reference for those engaged in beam plasma physics and fusion research. Readers frequently note the technical density of the prose, which is tailored specifically for advanced students and professionals in the field.
Page Count:
480
Publication Date:
2004-01-01
Publisher:
Clarendon Press
ISBN-10:
0191524050
ISBN-13:
9780191524059
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