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单模激光系统中信噪比对净增益的随机共振
引用本文:程庆华,曹力,吴大进,徐大海.单模激光系统中信噪比对净增益的随机共振[J].光子学报,2004,33(8):901-904.
作者姓名:程庆华  曹力  吴大进  徐大海
作者单位:1. 华中科技大学激光技术国家重点实验室,武汉,430074;长江大学物理科学与技术学院,荆州,434100
2. 华中科技大学激光技术国家重点实验室,武汉,430074
3. 华中科技大学物理系,武汉,430074
4. 长江大学物理科学与技术学院,荆州,434100
基金项目:国家自然科学基金 (批准号 :10 2 75 0 2 5 )资助,湖北省教育厅重点科研项目 (自然科学类 )资助 (项目编号 :2 0 0 3A0 0 1)
摘    要:研究了受信号调制的色泵噪声和实虚部间关联的量子噪声驱动的单模激光系统的随机共振现象,发现信噪比随激光系统净增益系数存在随机共振.当泵噪声自关联时间和调制信号频率增加时,信噪比随激光系统净增益系数的变化曲线经历了从同时出现共振和抑制到单调上升的演化过程;当调制信号振幅、泵噪声强度和量子噪声强度、量子噪声实虚部间关联系数等变化时,该曲线一直同时出现共振和抑制,但共振峰和抑制谷有很大的变化.

关 键 词:单模激光  随机共振  信噪比  净增益
收稿时间:2004-01-07
修稿时间:2004年1月7日

Stochastic Resonance of the Signal-to-noise Ration Versus the Net Gain in a Single-model Laser System


.Stochastic Resonance of the Signal-to-noise Ration Versus the Net Gain in a Single-model Laser System[J].Acta Photonica Sinica,2004,33(8):901-904.
Authors:

Institution:(1 State Key Laboratory of Laser Technology,Huazhong University of Science and Technology,Wuhan 430074)
(2 Department of Physics,Yangzi University,Jinzhou 434100)
(3 Department of Physics,Huazhong University of Science and Technology,Wuhan 430074)
Abstract:The phenomenon of stochastic resonance is studied in a single-mode laser system driven by the colored pump noise with signal modulation and the quantum noise with cross-correlation between the real and imaginary parts,and which is found in the signal-to-noise ratio R versus net gain a0 curve. Moreover,when pump noise self-correlation time τ and frequency Ω of signal increase, the curve of R~a0 will experience a change process from simultaneous existence of resonances and suppressions to monotonous rise. When the amplitude B of signal,the pump noise intensity P and quantum noise intensity Q,and the cross-correlation coefficient between the real and imaginary parts of the quantum noise λq all change,the curve of R~a0 will always simultaneous appear resonances and suppressions,but the resonance-peak and suppressions-valley will take place great change.
Keywords:Single mode laser  Stochastic resonance  Signal-to-noise ratio  Net gain
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