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Optical Bistability in a Controllable Giant Self-Kerr Nonlinear Gaseous Medium under Electromagnetically Induced Transparency and Doppler Broadening

机译:在电磁诱导的透明度和多普勒扩大下,可控巨型自克尔非线性气态介质中的光学双稳态

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摘要

We study optical bistability (OB) in a controllable giant self-Kerr nonlinear atomic gaseous medium placed in a unidirectional ring cavity. The medium is coherently excited by strong controlling field and a weak probe laser field under electromagnetically induced transparency (EIT) and Doppler broadening. In a weak field limit of the probe light, an analytic OB equation for the probe light field is derived as an analytic function of parameters of the controlling field and temperature of the medium. It is shown that OB characters can be manipulated with the parameters due to the controllable properties of the self-Kerr nonlinearity. Furthermore, enhancement of the Kerr nonlinearity reduces the switching intensity threshold and width of the OB.
机译:我们在置于单向环腔中的可控巨型自克尔非线性原子气体介质中研究光学双稳态(OB)。 通过电磁诱导的透明度(EIT)和多普勒展会,通过强控制场和弱探针激光场合持介质。 在探针光的弱场极限中,探针光场的分析OB方程被推导为控制场和介质温度的参数的分析功能。 结果表明,由于自克尔非线性的可控属性,可以用参数操纵OB字符。 此外,克尔非线性的增强降低了OB的切换强度阈值和宽度。

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