论文标题

有限温度下的两光原子水平宽度

Two-photon atomic level widths at finite temperatures

论文作者

Zalialiutdinov, T., Anikin, A., Solovyev, D.

论文摘要

通过热双环自动能源校正对结合电子的假想部分,评估了氢和H样氦气中激发能水平的热两个光子水平扩大。所有派生均在有限温度下严格的量子电动力学理论的框架中呈现,并且适用于H样离子。在此基础上,我们发现了黑体辐射引起的水平的贡献,这与受刺激的两光子衰变和热光子的拉曼散射引起的通常的线扩大根本不同。两环的热校正的数值计算在氢气和单一离子化的氦原子中的$ 2S $状态的两片宽度表明,该效果可能显着超过计算中通常包括的高阶相对论和辐射QED校正。此外,在相关的实验室温度下,热双环自我能量校正显着超过了“普通”刺激的单次减少率。在这项工作中,进行了详细的分析以及对H样离子中现有实验室测量的相应比较。

The thermal two-photon level broadening of the excited energy levels in the hydrogen and H-like helium is evaluated via the imaginary part of thermal two-loop self-energy correction for bound electron. All the derivations are presented in the framework of rigorous quantum electrodynamic theory at finite temperatures and are applicable for the H-like ions. On this basis, we found a contribution to the level broadening induced by the blackbody radiation which is fundamentally different from the usual line broadening caused by the stimulated two-photon decay and the Raman scattering of thermal photons. Numerical calculations of the two-loop thermal correction to the two-photon width for the $2s$ state in hydrogen and singly ionized helium atoms show that the effect could significantly exceed the higher-order relativistic and radiative QED corrections commonly included in the calculations. In addition, the thermal two-loop self-energy correction significantly exceeds the "ordinary" stimulated one-photon depopulation rate at the relevant laboratory temperatures. In this work, detailed analysis and the corresponding comparison of the effect with the existing laboratory measurements in H-like ions are carried out.

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