Schrödinger soliton in a fiber waveguide exhibiting both gain and losses: squeezed states and growth of noise in the linear approximation

A. V. Belinskii
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Abstract

An investigation is made of the evolution of quantum fluctuations of a fundamental soliton in the course of its propagation in a nonlinear fiber waveguide characterized by losses and compensated by amplification. Simple relationships are obtained for the amplitude and phase noise, quantum uncertainty of the position and momentum, and also fluctuations of the quadrature components of the radiation field. Numerical estimates are obtained. It is shown that loss-compensating amplification is unnecessary for efficient formation of squeezed states of a soliton.
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Schrödinger同时显示增益和损耗的光纤波导中的孤子:线性近似中的压缩状态和噪声的增长
研究了一个基本孤子在非线性光纤波导中以损耗和放大补偿为特征的传播过程中的量子涨落演化。得到了振幅和相位噪声、位置和动量的量子不确定性以及辐射场正交分量的涨落之间的简单关系。得到了数值估计。证明了损耗补偿放大对于孤子压缩态的有效形成是不必要的。
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Large-Aperture CO2 Amplifier Fast objective for focusing laser light Increasing the mode-locking efficiency of a cw solid-state laser with an auxiliary cavity Regarding the paper "Stability of the eigenvalue solutions in a nonlinear directional coupler" by V. P. Torchigin et al. [Sov. J. Quantum Electron. 21, 1144–1147 (1991)] Correlation diagnostics of random spatially nonuniform optical fields
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