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Titlebook: Radiative Processes in Discharge Plasmas; Joseph M. Proud,Lawrence H. Luessen Book 1986 Springer Science+Business Media New York 1986 Germ

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书目名称Radiative Processes in Discharge Plasmas
编辑Joseph M. Proud,Lawrence H. Luessen
视频video
丛书名称Nato ASI Subseries B:
图书封面Titlebook: Radiative Processes in Discharge Plasmas;  Joseph M. Proud,Lawrence H. Luessen Book 1986 Springer Science+Business Media New York 1986 Germ
出版日期Book 1986
关键词Germany; USA; communication; diagnostics; laser; metals; radiation; science; spectroscopy; technology
版次1
doihttps://doi.org/10.1007/978-1-4684-5305-8
isbn_softcover978-1-4684-5307-2
isbn_ebook978-1-4684-5305-8
copyrightSpringer Science+Business Media New York 1986
The information of publication is updating

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Tutorial Lecture — Radiative and Collisional Processes in Plasmas are therefore of considerable interest, notwithstanding the fact that higher temperature plasmas have attracted more attention because of their importance for magnetically confined fusion plasmas. As a matter of fact, plasma conditions as desired for inertially confined fusion plasmas seem even mor
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Radiative Processes in Discharge Plasmas: Questions and Issues ionized gas is called a plasma. In addition to electrons and ions, a plasma may be composed of atomic and molecular species in various states of excitation. Excited atoms and molecules are continually produced by collisions with other particles and by absorption of photons, and continually destroye
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Emission Spectroscopypectroscopy commonly is understood to be concerned with the electromagnetic radiation emitted from plasmas without external influence on the radiators. The main objective usually is to obtain information on the plasma state, i.e. for example, on temperatures, densities, plasma composition, magnetic
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Transient Phenomena in High Pressure Dischargesstate of the arc phase have been mainly directed toward elucidating the time resolved spatial growth of space charge development. An understanding of the features of the emitted spectrum, however, has become necessary in order to extract information concerning the nature of the various plasma states
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Molecular Spectral Intensities in LTE Plasmasis, lighting etc. Much modeling has been done on these arcs and it has led to detailed understanding of at least some aspects (Lowke, 1979; Wharmby, 1980; Pfender, 1978). Some arcs contain substantial proportions of molecular species: for example, switchgear arcs in SF. (Lowke and Liebermann, 1972)
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Self-Reversed Emission Lines in Inhomogeneous Plasmasa and emitted by it. The line profile emitted by a volume element of a plasma depends on the properties of both the isolated radiating atom and the plasma in the immediate environment of the radiator. The observed line contour outside the luminous source is the superposition of different line profil
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