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Highly polar states of Rydberg atoms in strong magnetic and weak electric fields

机译:强磁场和弱电场中里德堡原子的高极性态

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We study the spectra of diamagnetic rubidium Rydberg atoms in strong magnetic and weak electric parallel fields, in the n-mixing regime. Our emphasis is on isolated pairs of near-degenerate, opposite-parity, diamagnetic states that become mixed by the weak electric field. Such level pairs allow for the generation of nondegenerate states with large, tunable permanent electric dipole moments and large optical excitation cross sections from the atomic ground state. We investigate how the dipole moments and the zero-electric-field energy defects of these level pairs can be tuned using small variations of the electric and magnetic fields. Using calculations, we explore the abundance of such level pairs over wide spectral regions for several magnetic quantum numbers. Applications of polar, diamagnetic Rydberg states in Rydberg-atom interaction experiments are briefly discussed.
机译:我们研究了在n混合状态下强磁场和弱电场中的反磁性rub Rydberg原子的光谱。我们的重点是被弱电场混合成对的近简并反奇偶抗磁态的孤立对。这样的能级对允许产生具有大的,可调谐的永久电偶极矩和来自原子基态的大的光激发截面的非简并态。我们研究如何使用较小的电场和磁场变化来调节这些能级对的偶极矩和零电场能量缺陷。通过计算,我们探索了在多个光谱范围内多个磁性量子数的此类能级对的丰度。简要讨论了反磁的雷德堡态在里德堡-原子相互作用实验中的应用。

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