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Stability of hydrogen atom in non-ideal classical plasmas

机译:非理想古典等离子体中氢原子的稳定性

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The stability of a hydrogen atom embedded in classical nonideal plasma has been investigated. The interaction potential between the proton and the electron has been modeled by a pseudopotential, which is obtained from a sequential solution of Bogolyubov chain equations. The critical values of the plasma screening parameters have been determined quite accurately within the framework of the Rayleigh-Ritz variational method by employing an extensive wave function following a definitive prescription. Convergence of the results has been corroborated by increasing the number of terms in the wave function. A detailed study has been carried out on the effects of nonideality of plasma on the bound states for the density and temperature lying in the ranges of 2.7 x [10(23)-10(26)] m(-3) and [10(4)-10(5)] K, respectively. It is found that the atom remains bound in the aforementioned density and temperature ranges. Published under license by AIP Publishing.
机译:研究了嵌入典型非藻血浆中的氢原子的稳定性。 质子和电子之间的相互作用电位已经由伪能量建模,这是由蒙冰烃链方程的顺序解决方案获得的。 通过采用在确定后处方之后的广泛的波函数,通过采用广泛的波函数来确定等离子体筛选参数的临界值。 结果通过增加波浪功能中的术语数来证实了结果。 对血浆的非抗性对密度和温度的染色态的影响进行了详细研究,其含有2.7×[10(23)-10(26)] m(-3)和[10( 4)-10(5)k分别。 发现原子在上述密度和温度范围内保持束缚。 通过AIP发布在许可证下发布。

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