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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >Line Radiation of Multiply Charged Ions with a Fermi-Dirac Level Distribution of Electrons at High Temperatures
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Line Radiation of Multiply Charged Ions with a Fermi-Dirac Level Distribution of Electrons at High Temperatures

机译:电子在高温下具有费米-狄拉克能级分布的带电荷离子的线辐射

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摘要

The line radiation of multiply charged ions with a Fermi-Dirac level distribution of electrons is investigated in the plasma temperature range where the motion of electrons may be treated as quasi-classical, and the potential in which they move, as Coulomb, which is valid under the conditions ZE{sub}H max(T, hω{sub}I) Z{sup}2E{sub}H, where E{sub}H= 13.6 eV is the ionization energy of hydrogen, Z is the atomic number of the ion being treated, and ω{sub}I is the frequency of electron reversal in the Coulomb field at an energy equal to the ionization energy. The spectrum and intensity of radiation of ions are calculated. In the limit of high plasma densities, the intensity of radiation per ion turns out to be independent of density and proportional to T{sup}2
机译:在等离子体温度范围内研究了具有费米-狄拉克能级电子分布的带电离子的线辐射,在该温度范围内,电子的运动可被视为准经典电子,并且其移动的电势被视为库仑,这是有效的。在条件ZE {sub} H max(T,hω{sub} I) Z {sup} 2E {sub} H的条件下,其中E {sub} H = 13.6 eV是氢的电离能,Z为ω{sub} I是能量等于电离能的库仑场中电子反转的频率。计算离子的辐射光谱和强度。在高等离子体密度的极限下,每个离子的辐射强度与密度无关,并且与T {sup} 2成比例

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