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Effects of correlations between the real and imaginary parts of quantum noise on intensity fluctuation for a saturation laser model

Effects of correlations between the real and imaginary parts of quantum noise on intensity fluctuation for a saturation laser model
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摘要 This paper studies the effects of cross-correlations between the real and imaginary parts of quantum noise on the laser intensity in a saturation laser model. It derives the analytic expressions of the intensity correlation function C(τ) and the associated relaxation time T(C) in the case of a stable locked phase resulting from the cross-correlation λq between the real and imaginary parts of quantum noise. Based on numerical computations it finds that the presence of cross correlations between the real and imaginary parts of quantum noise slow down the decay of intensity fluctuation, i.e., it causes the increase of intensity fluctuation. This paper studies the effects of cross-correlations between the real and imaginary parts of quantum noise on the laser intensity in a saturation laser model. It derives the analytic expressions of the intensity correlation function C(τ) and the associated relaxation time T(C) in the case of a stable locked phase resulting from the cross-correlation λq between the real and imaginary parts of quantum noise. Based on numerical computations it finds that the presence of cross correlations between the real and imaginary parts of quantum noise slow down the decay of intensity fluctuation, i.e., it causes the increase of intensity fluctuation.
机构地区 Department of Physics
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第1期76-79,共4页 中国物理B(英文版)
基金 Project supported by the Natural Science Foundation of Yunnan Province, China (Grant No 2006A0002M)
关键词 saturation laser model correlated noises correlation function saturation laser model, correlated noises, correlation function
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