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Probing interactions between Rydberg atoms with large electric dipole moments in amplitude-modulated electric fields

机译:在振幅调制电场中探测具有大电偶极矩的里德堡原子之间的相互作用

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Dipole-dipole interactions between helium atoms in Rydberg-Stark states with principal quantum number n = 53 and approximately linear Stark energy shifts, resulting from induced electric dipole moments of approximately 7900 D, have been investigated experimentally. The experiments were performed in pulsed supersonic metastable helium beams, with particle number densities of up to similar to 10(9) cm(-3). In the presence of amplitude-modulated, radio-frequency electric fields, changes in the spectral intensity distributions associated with the transitions to these states that are attributed to dipole-dipole interactions within the ensembles of excited atoms have been observed. The experimental results are in excellent agreement with calculations of the Rydberg energy level structure carried out using Floquet methods, and excitations shared by up to four atoms. The use of these Rydberg-Stark states as sensors for nonresonant broadband radio-frequency electrical noise is also discussed.
机译:通过实验研究了由约7900 D的感应电偶极矩产生的,主量子数n = 53的Rydberg-Stark态氦原子之间的偶极-偶极相互作用和近似线性的St​​ark能量位移。实验是在脉冲超音速亚稳态氦气束中进行的,其粒子数密度最高可达10(9)cm(-3)。在存在振幅调制的射频电场的情况下,已观察到与跃迁到这些状态有关的光谱强度分布变化,这归因于激发原子团内的偶极-偶极相互作用。实验结果与使用Floquet方法进行的里德伯格能级结构的计算以及最多由四个原子共享的激发非常吻合。还讨论了将这些Rydberg-Stark状态用作非谐振宽带射频电噪声的传感器。

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