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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Investigations of Stark effects in xenon Rydberg states by laser-induced fluorescence-dip spectroscopy
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Investigations of Stark effects in xenon Rydberg states by laser-induced fluorescence-dip spectroscopy

机译:激光诱导的荧光浸没光谱法研究氙在里德堡状态下的斯塔克效应

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Stark effects in Rydberg states of xenon atoms were investigated both experimentally and theoretically. The experimental part consisted of laser-induced fluorescence-dip spectroscopy. Using a (2+1)-photon excitation scheme, xenon atoms were excited from the ground state to high-lying Rydberg ns and nd levels. Measurements were made in a controllable electric field environment, produced by applying a pulsed voltage to two parallel metal electrodes. For energy levels with principal quantum numbers ranging from 12 to 18, Stark shifts of up to 4.8 cm(-1) were observed for electric fields ranging from 0 to 4000 V/cm. Additionally, mixing of energy levels in high electric fields was measured for nd levels. The experimental results were compared to a theoretical calculation based on solving the Schrodinger equation for a perturbed Hamiltonian. The calculation method proved to be very accurate for predicting Stark effects in Rydberg nd levels, while for ns levels the agreement was only moderate, probably due to deviations from the assumption of a hydrogenlike atom that is used in the calculation. Finally, the feasibility of using measurements of Stark shifts of Rydberg levels as a diagnostic for electric fields in low-pressure discharges was discussed.
机译:通过实验和理论研究了氙原子在里德堡状态下的斯塔克效应。实验部分包括激光诱导的荧光浸没光谱法。使用(2 + 1)-光子激发方案,氙原子从基态激发到高位Rydberg ns和nd能级。测量是在可控电场环境中进行的,该环境是通过向两个平行的金属电极施加脉冲电压来产生的。对于能级数为12到18的能级,对于0到4000 V / cm的电场,观察到高达4.8 cm(-1)的斯塔克位移。此外,还测量了高电场中能量水平的混合。将实验结果与基于求解薛定inger方程的摄动哈密顿方程的理论计算进行了比较。事实证明,该计算方法对于预测Rydberg nd级的Stark效应非常准确,而对于ns级,该协议只是适度的,可能是由于偏离了用于计算的类氢原子的假设。最后,讨论了使用里德伯格能级的斯塔克位移测量值作为低压放电电场诊断的可行性。

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