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铯原子里德堡态Stark能量及电偶极矩的测量和理论计算
引用本文:李昌勇,张临杰,赵建明,贾锁堂.铯原子里德堡态Stark能量及电偶极矩的测量和理论计算[J].物理学报,2012,61(16):163202-163202.
作者姓名:李昌勇  张临杰  赵建明  贾锁堂
作者单位:量子光学与光量子器件国家重点实验室 山西大学激光光谱实验室,太原,030006
基金项目:国家重点基础研究发展计划(批准号: 2012CB921603); 国家高技术研究发展计划(批准号: 2009AA01Z319); 国家自然科学基金(批准号: 10934004, 60778008, 61078001); 国家基础科学人才培养基金(批准号: J1103210); 山西省国际科技合作 项目(批准号: 2010081046)和山西省回国留学人员科研基金资助的课题.
摘    要:里德堡原子由于具有体积大、寿命长、易极化及在外电场中能级易于操控等特点, 已经成为了目前物理学领域研究的热点之一. 本文在磁光阱中实验测量了铯原子15P3/2和16P3/2态的Stark光谱,根据光谱给出了15P3/2和16P3/2|m|=1/2 Stark态在0-1400 V/cm场强范围适用的Stark 能量和偶极矩的经验性解析表达式; 用数值方法求解薛定谔方程获得了这些态的Stark能量、偶极矩和电子几率密度分布. 电子几率密度分布定性说明了计算的偶极矩矢量的方向是正确的. 计算的Stark能量、偶极矩与实验结果相一致.

关 键 词:里德堡态  电偶极矩  Stark效应  电子几率密度
收稿时间:2011-12-08

Measurement and theoretical calculation for Stark energy and electric dipole moment of Cs Rydberg state
Li Chang-Yong,Zhang Lin-Jie,Zhao Jian-Ming,Jia Suo-Tang.Measurement and theoretical calculation for Stark energy and electric dipole moment of Cs Rydberg state[J].Acta Physica Sinica,2012,61(16):163202-163202.
Authors:Li Chang-Yong  Zhang Lin-Jie  Zhao Jian-Ming  Jia Suo-Tang
Institution:State Key Laboratory of Quantum Optics and Quantum Optics Devices, Laser Spectroscopy Laboratory, Shanxi University, Taiyuan 030006, China
Abstract:Rydberg atoms has been one of the hot current research subjects in the field of physics becasue of its large volume, long life, easy polarization and energy levels easily controlled by external electric field. In this paper, the Stark energies and electric dipole moments of 15P3/2 and 16P3/2 of atomic cesium are measured experimentally. The empirical analytic equations of dipole moments and Stark energies for these two states are presented. We also numerically solve the Schrödinger equation and obtain Stark energies, dipole moments, and electron probability density distributions. The probability density distribution accords with the calculated dipole moments. The Stark energies and dipole moments are consistent with our experimental results. To the best of our knowledge, the measurement and calculation methods for dipole moments presented in this paper are reported for the first time.
Keywords:Rydberg state  dipole moment  Stark effect  electron polarizability dencity
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