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Titlebook: Laser Plasmas and Nuclear Energy; Heinrich Hora,Yuri Ksander (Senior Staff Member) Book 1975 Plenum Press, New York 1975 boron.cooling.dev

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发表于 2025-3-21 19:53:59 | 显示全部楼层 |阅读模式
书目名称Laser Plasmas and Nuclear Energy
编辑Heinrich Hora,Yuri Ksander (Senior Staff Member)
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图书封面Titlebook: Laser Plasmas and Nuclear Energy;  Heinrich Hora,Yuri Ksander (Senior Staff Member) Book 1975 Plenum Press, New York 1975 boron.cooling.dev
描述Most of this book was written before October 1973. Thus the statements concerning the energy crisis are now dated, but remain valid nevertheless. However, the term "energy crisis" is no longer the unusual new concept it was when the material was written; it is, rather, a commonplace expression for a condition with which we are all only too familiar. The purpose of this book is to point out that the science and technology of laser-induced nuclear fusion are an extraordinary subject, which in some way not yet completely clear can solve the problem of gaining a pollution-free and really inexhaustible supply of inexpensive energy from the heavy hydrogen (deuterium) atoms found in all terrestrial waters. The concept is very obvious and very simple: To heat solid deuterium or mixtures of deuterium and tritium (superheavy hydrogen) by laser pulses so rapidly that despite the resulting expansion and cooling there still take place so many nuclear fusion reactions tnat the energy produced is greater than the laser energy that had to be applied. Compression of the plasma by the laser radiation itself is a more sophisticated refinement of the process, but one which at the present stage of lase
出版日期Book 1975
关键词boron; cooling; development; energy; hydrogen; materials; nuclear energy; pollution; power generation; radiat
版次1
doihttps://doi.org/10.1007/978-1-4684-2085-2
isbn_softcover978-1-4684-2087-6
isbn_ebook978-1-4684-2085-2
copyrightPlenum Press, New York 1975
The information of publication is updating

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发表于 2025-3-21 23:54:35 | 显示全部楼层
Macroscopic Plasma Physics,the third terms on the right-hand side of the equations represent the interaction between the fluids (friction) given by the collision frequency ., which is assumed to be known from microscopic theories.
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Introduction,hortterm, perhaps within 10 years under the most advantageous conditions, laser fusion may lead to a practicable reactor if compression of plasma by lasers to densities 10,000 times the solid state density can be achieved within the near future.
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Refractive Index and Absorption,e clearly equivalent . The imaginary part of ñ, κ, is called the absorption coefficient. Its meaning is seen immediately from its relation to the absorption constant K, which determines the attenuation of a laser intensity I at some depth x; if I. is the intensity at x = 0 .The absorption constant is then
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Book 1975ver, the term "energy crisis" is no longer the unusual new concept it was when the material was written; it is, rather, a commonplace expression for a condition with which we are all only too familiar. The purpose of this book is to point out that the science and technology of laser-induced nuclear
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Lasers,her photon of the same frequency ω which passes the excited atom and stimulates deexcitation by pulling out the photon from the atom. The two resulting photons have the same frequency and the same phase which results in a high coherence of the radiation. Stimulated emission was described in 1917 by
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