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Investigation of odd-order nonlinear susceptibilities in atomic vapors
Authors:Yaqi Yan  Zhenkun Wu  Jinhai Si  Lihe Yan  Yiqi Zhang  Chenzhi Yuan  Jia Sun  Yanpeng Zhang
Institution:1. Key Laboratory for Physical Electronics and Devices of the Ministry of Education, Xi’an Jiaotong University, Xi’an 710049, China;2. Shaanxi Key Laboratory of Information Photonic Technique, Xi’an Jiaotong University, Xi’an 710049, China;3. Teaching and Research Section of Maths & Physics, Guangzhou Commanding Academy of Chinese People’s Armed Police Force, Guangzhou, 510440, China
Abstract:We theoretically deduce the macroscopic symmetry constraints for arbitrary odd-order nonlinear susceptibilities in homogeneous media including atomic vapors for the first time. After theoretically calculating the expressions using a semiclassical method, we demonstrate that the expressions for third- and fifth-order nonlinear susceptibilities for undressed and dressed four- and six-wave mixing (FWM and SWM) in atomic vapors satisfy the macroscopic symmetry constraints. We experimentally demonstrate consistence between the macroscopic symmetry constraints and the semiclassical expressions for atomic vapors by observing polarization control of FWM and SWM processes. The experimental results are in reasonable agreement with our theoretical calculations.
Keywords:Nonlinear susceptibility  Electromagnetically induced transparency  Multi-wave mixing  Atomic vapor
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