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Generation of squeezed states of light with a fiber-optic ring interferometer

机译:光纤环形干涉仪产生光的压缩状态

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摘要

Forward nondegenerate four-wave mixing in an optical-fiber ring resonator is proposed as a method to generate squeezed states of light. The nonlinear interactions are analyzed both with a self-consistent propagation-equation technique and with Fokker-Planck equations in the Glauber-Sudarshan P representation. Excellent squeezing is predicted at modest input power levels, with perfect quantum-noise squeezing at the critical points for optical bistability. A method to suppress the stimulated Brillouin effect is proposed and demonstrated experimentally, and the effects of forward spontaneous guided acoustic wave Brillouin scattering inside the resonator are analyzed. Methods are suggested for minimizing this noise under conditions where squeezing can be detected. Experimental apparatus and procedures are outlined for verifying the predictions of our theory and demonstrating squeezing of classical and quantum noise.
机译:提出了在光纤环形谐振器中进行前向简并四波混频作为产生光的压缩态的方法。使用自洽传播方程技术和Glauber-Sudarshan P表示中的Fokker-Planck方程对非线性相互作用进行了分析。在适度的输入功率水平下,预计将实现出色的压缩效果,而在光学双稳态的关键点上,将获得完美的量子噪声压缩效果。提出了抑制布里渊效应的方法,并进行了实验验证,并分析了共振器内部正向自发声波布里渊散射的影响。建议了在可以检测到挤压的条件下将噪声最小化的方法。概述了实验设备和程序,以验证我们的理论预测并证明对经典噪声和量子噪声的压缩。

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