Tune-out wavelengths of the hyperfine components of the ground level of Cs133 atoms

Jun Jiang, Xiangyu Li, Xia Wang, C. Dong, Z. Wu
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引用次数: 6

Abstract

The static and dynamic electric-dipole polarizabilities and tune-out wavelengths for the ground state of Cs atoms are calculated by using a semiempirical relativistic configuration interaction plus core polarization approach. By considering the hyperfine splittings, the static and dynamic polarizabilities, hyperfine Stark shifts, and tune-out wavelengths of the hyperfine components of the ground level of $^{133}$Cs atoms are determined. It is found that the hyperfine shifts of the first primary tune-out wavelengths are about $-$0.0135 nm and 0.0106 nm, which are very close to the hyperfine interaction energies. Additionally, the contribution of the tensor polarizability to the tune-out wavelengths is determined to be about $10^{-5} \sim 10^{-6}$ nm.
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调出Cs133原子底能级超精细成分的波长
采用半经验相对论组态相互作用加核心极化方法计算了Cs原子基态的静态和动态电偶极极化率和调谐波长。通过考虑超细分裂,确定了$^{133}$Cs原子地能级超细组分的静态和动态极化率、超细斯塔克位移和调谐波长。发现第一主调谐波长的超精细位移约为$-$0.0135 nm和0.0106 nm,与超精细相互作用能非常接近。此外,张量极化率对调谐波长的贡献约为$10^{-5}\sim $10^{-6}$ nm。
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