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Effect of exit and injection rates on phase-dependent transient evolution of gain without inversion
作者姓名:QIAO  Hong-xia  BU  Fan-ge  TAN  Xia  TONG  Dian-min  FAN  Xi-jun
作者单位:College of Physics and Electronics, Shandong Normal University, Jinan 250014, China
基金项目:国家自然科学基金 , 山东省自然科学基金
摘    要:It is shown that in an open Λ-type system with spontaneously generated coherence, the transient evolution rule of the gain of lasing without inversion (LWI) is very sensitive to variation of the relative phase φ between the probe and driving fields; the variety of the atomic exit rateγ_0 and the ratio C of the atomic injection rates also have a considerable effect on the phase-dependent transient evolution rule of LWI gain. We find that whenφ=0, the transient and stationary LWI gain increases with C increasing but decreases with γ_0 increasing; whenφ≠0 , the effect of C andγ_0 on LWI gain is just opposite to that when φ=0 ; in order to get the largest transient and stationary LWI gain, we need selecting suitable values of φ,γ_0 and C.

关 键 词:激光技术  注入率  相关性  反转性
文章编号:1673-1905(2007)05-0391-03
收稿时间:18 April 2007
修稿时间:2007-04-18

Effect of exit and injection rates on phase-dependent transient evolution of gain without inversion
QIAO Hong-xia BU Fan-ge TAN Xia TONG Dian-min FAN Xi-jun.Effect of exit and injection rates on phase-dependent transient evolution of gain without inversion[J].Opto-electronics Letters,2007,3(5):391-393.
Authors:Hong-xia Qiao  Fan-ge Bu  Xia Tan  Dian-min Tong and Xi-jun Fan
Affiliation:(1) College of Physics and Electronics, Shandong Normal University, Jinan, 250014, China
Abstract:It is shown that in an open Λ-type system with spontaneously generated coherence, the transient evolution rule of the gain of lasing without inversion (LWI) is very sensitive to variation of the relative phase ϕ between the probe and driving fields; the variety of the atomic exit rate γ0 and the ratio C of the atomic injection rates also have a considerable effect on the phase-dependent transient evolution rule of LWI gain. We find that when ϕ =0, the transient and stationary LWI gain increases with C increasing but decreases with γ0 increasing; when ϕ ≠ 0, the effect of C and γ0 on LWI gain is just opposite to that when ϕ=0; in order to get the largest transient and stationary LWI gain, we need selecting suitable values of ϕ, γ0 and C. Supported by the National Natural Science Foundation of China (Grant No. 10675076)and the Natural Science Foundation of Shandong Province (Grant No. Y2006A21).
Keywords:TN241
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