摘要
在散斑和半导体激光器的自混合干涉理论的基础上 ,提出了基于法布里珀罗腔的自混合散斑干涉模型 ,对粗糙表面产生的激光器内自混合散斑干涉效应 (SMSI)进行了详细的理论研究和分析 ,得到了粗糙腔条件下的激光动力学的数值解。模拟产生了高斯相关随机表面及其在夫琅禾费面上产生的散斑场 ,以及该散斑场与相干光场叠加所形成的光场 ,分析了这些情况中光强的统计特征 ,与已知实验情况进行了对比 ,模拟结果与已知统计结果相同。给出了粗糙表面运动时激光器输出增益的变化及其概率密度分布。对由于照明宽度和外腔长度的变化而给粗糙表面运动时激光器输出增益变化带来的影响进行了分析。实验结果和模拟结果相符。
Based on the theory of the speckle and the self-mixing interference in laser diode (LD), Fabry-Perot (F-P) cavity model is given. The dynamics solution of a laser diode is obtained in the case of a rough surface after studying and analyzing the self mixing speckle interference (SMSI). The Gaussian correlation random surface and its speckle field on the Fraunhofer plane as well as superposition of speckle filds and interference field are simulated, and theiry statistical characteristics of the optical intensity are also analyzed. Compared with the known experiment, the results of simulation agree with the known statistical properties. The output gain variation of a LD and its probability density function are obtained when the rough surface is moving across the light beam. The effects of illumination width and external cavity length on the changes of output gain of a LD are discussed. The experimental results agree with the simulation calculation.
出处
《光学学报》
EI
CAS
CSCD
北大核心
2004年第9期1229-1236,共8页
Acta Optica Sinica
基金
国家自然科学基金 (5 0 375 0 74 )
江苏省自然科学基金(2 0 0 110 9)资助课题。
关键词
激光技术
自混合散斑干涉
输出增益
概率密度函数
laser technology
self-mixing speckle interference
output gain
probability density function