Dynamical Symmetry and Generation of Squeezed States of Light

IF 0.7 4区 物理与天体物理 Q4 OPTICS
Sergey V. Prants
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引用次数: 0

Abstract

Using the Lie-algebraic approach, we develop the theory of generation of squeezed states of light in nonstationary parametric processes of the light interaction with a medium with the quadratic and quartic nonlinearities. The exact solution for the variance of the quadrature component of the field strength is obtained in the case of the quadratic parametric process with the SU(1, 1) dynamical symmetry. We show that decay of the field mode in this processes may have strong impact on squeezing. The solution for the standard deviation of the field strength in the case of the quartic parametric process with the approximated \({\mathcal{L}}_{5}\) dynamical symmetry is obtained in the first order of smallness with respect to the nonlinearity parameter.

光的动态对称性和挤压态的产生
我们利用李代数方法,发展了在光与介质相互作用的非稳态参数过程中产生挤压光态的理论,该过程具有二次和四次非线性。在具有 SU(1, 1) 动态对称性的二次参数过程中,我们得到了场强正交分量方差的精确解。我们表明,该过程中场模的衰减可能会对挤压产生强烈影响。在具有近似\({\mathcal{L}}_{5}\)动态对称性的四元参数过程中,场强标准偏差的解是在关于非线性参数的小的一阶得到的。
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来源期刊
CiteScore
1.50
自引率
22.20%
发文量
73
审稿时长
2 months
期刊介绍: The journal publishes original, high-quality articles that follow new developments in all areas of laser research, including: laser physics; laser interaction with matter; properties of laser beams; laser thermonuclear fusion; laser chemistry; quantum and nonlinear optics; optoelectronics; solid state, gas, liquid, chemical, and semiconductor lasers.
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