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Rydberg原子的微波电磁感应透明-Autler-Townes光谱
引用本文:樊佳蓓,焦月春,郝丽萍,薛咏梅,赵建明,贾锁堂.Rydberg原子的微波电磁感应透明-Autler-Townes光谱[J].物理学报,2018,67(9):93201-093201.
作者姓名:樊佳蓓  焦月春  郝丽萍  薛咏梅  赵建明  贾锁堂
作者单位:1.量子光学与光量子器件国家重点实验室, 山西大学激光光谱研究所, 太原 030006;2.山西大学极端光学协同创新中心, 太原 030006
基金项目:国家重点研发计划(批准号:2017YFA0304203)、国家自然科学基金(批准号:61475090,61675123,61775124)、长江学者和创新团队发展计划(批准号:IRT13076)、国家自然科学基金重点项目(批准号:11434007)和山西省"1331工程"重点学科建设计划资助的课题.
摘    要:主要研究了室温下微波场缀饰的铯Rydberg原子的电磁感应透明-Autler-Townes(EIT-AT)光谱.首先,以铯原子6S_(1/2)→6P_(3/2)→50S_(1/2)形成阶梯型三能级系统,利用强耦合光作用于6P_(3/2)→50S_(1/2)的Rydberg跃迁,弱探测光耦合基态跃迁6S_(1/2)→6P_(3/2)并探测由耦合光形成的电磁感应透明(EIT)效应.然后,以频率为30.582 GHz的微波电场耦合相邻的Rydberg能级50S_(1/2)→50P_(1/2)产生微波AT分裂.利用Rydberg EIT探测微波耦合相邻Rydberg能级产生的AT分裂,形成EIT-AT光谱,进而实现微波电场的测量.当微波场的强度增加到一定值时,EIT-AT光谱表现为多峰光谱结构.分析EIT-AT多峰光谱的成因,发现这主要是由场的不均匀性导致的,一定的EIT-AT光谱特征对应于特定的非均匀场分布.研究表明,利用Rydberg EIT-AT光谱可以实现微波电场的测量,利用其光谱特征可实现微波场的实时监测,进而提出了一种提高微波场空间分辨率的测量方法.

关 键 词:Rydberg原子的电磁感应透明效应  微波场  Autler-Townes分裂
收稿时间:2017-12-13

Microwave electromagnetically induced transparency and Aulter-Townes spectrum of cesium Rydberg atom
Fan Jia-Bei,Jiao Yue-Chun,Hao Li-Ping,Xue Yong-Mei,Zhao Jian-Ming,Jia Suo-Tang.Microwave electromagnetically induced transparency and Aulter-Townes spectrum of cesium Rydberg atom[J].Acta Physica Sinica,2018,67(9):93201-093201.
Authors:Fan Jia-Bei  Jiao Yue-Chun  Hao Li-Ping  Xue Yong-Mei  Zhao Jian-Ming  Jia Suo-Tang
Institution:1.State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Laser Spectroscopy, Shanxi University, Taiyuan 030006, China;2.Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
Abstract:We present an electromagnetically induced transparency and Aulter-Townes (EIT-AT) spectrum of a Rydberg three-level atom that is dressed with a microwave field in a room-temperature cesium cell. The EIT is a quantum coherent effect produced by the interaction of atoms with electromagnetic waves, which leads to the decrease of the absorption for a weak resonant probe laser. AT splitting refers to the phenomenon, that the absorption line splits when an electromagnetic field that is in resonance or near resonance acts on the transition of atoms. Rydberg atoms are extremely sensitive to an external electric field due to their large polarizabilities and microwave transition dipole moments, which can be used to measure the external field. In this work, a Rydberg three-level EIT is used to detect Rydberg atom and AT splitting induced by the microwave field. Cesium levels 6S1/2, 6P3/2 and 50S1/2 constitute a Rydberg three-level system, in which a weak probe laser locking to the transition from 6S1/2 to 6P3/2 couples ground-state transition and the strong coupling laser resonates on the Rydberg transition from 6P2/3 to 50S1/2. The two Rydberg levels 50S1/2 and 50P1/2 are coupled with the microwave field at a frequency of 30.852 GHz, leading to the AT splitting of EIT line and forming an EIT-AT spectrum, which is used to measure the electric field amplitude of microwave. In order to further study the EIT-AT splitting characteristics of the Rydberg levels, we carry out a series of measurements by changing the microwave field. The experimental results show a broadened EIT-AT signal for the weak field range and the four-peak spectrum for the strong field, which is attributed to the inhomogeneity of the microwave field. The microwave in cesium cell, emitted by a function generator, shows inhomogeneous behavior such that the atoms interacting with the laser field experience the different fields, leading to the line broadened and multi-peak EIT-AT spectra. For the microwave transition of nS1/2-nP1/2 in this paper, a pair of EIT-AT lines should be obtained for an electric field value. The broadening of the EIT-AT spectrum and the multi-peak structure here are due to the inhomogeneity of the microwave field measurement. We propose a method to increase the spatial resolution by reducing the length of cesium cell. The result in this work provides a method of measuring the field amplitude and monitoring the distribution of microwave electric field, meanwhile the spatial resolution of the measurements can be improved by reducing the size of the cell.
Keywords:electromagnetically induced transparency of Rydberg atom  microwave field  Aulter-Townes splitting
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