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Calculation of the work function of the cathode plasma under explosive electron emission

机译:爆炸电子发射下阴极等离子体功函数的计算

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The initial stage of explosive electron emission represents is of most interest in the case of production of subnanosecond and picosecond electron beams in devices with explosive-emission cathodes. In this work we have developed, based on the electron density functional theory, a self-consistent model that allows one to calculate the work function of the cathode spot plasma in the range from the metal density to a density of ∼1018–1020 cm−3 in the interval of electron temperatures from zero to ∼5 eV. Calculations have been performed for a copper cathode. It has been shown that as the concentration of free charge carriers at the front the cathode flare is decreased from 1023 to 1020 cm−3, the work function of the plasma decreases to about one fifth.
机译:在具有爆炸性发射阴极的装置中产生亚纳秒和皮秒电子束的情况下,爆炸性电子发射的初始阶段最为令人关注。在这项工作中,我们基于电子密度泛函理论开发了一种自洽模型,该模型可以计算从金属密度到约10 18的密度范围内的阴极斑点等离子体的功函数。在电子温度从零到约5 eV的区间内 –10 20 cm −3 。已经对铜阴极进行了计算。结果表明,随着前端自由电荷载流子浓度的增加,阴极火炬从10 23 降低到10 20 cm -3 ,等离子体的功函数减小到大约五分之一。

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