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非准直外腔He-Ne激光自混合干涉
引用本文:王志兵,赵建林,底楠,付敏敏. 非准直外腔He-Ne激光自混合干涉[J]. 中国激光, 2009, 36(11). DOI: 10.3788/CJL20093611.2842
作者姓名:王志兵  赵建林  底楠  付敏敏
作者单位:西北工业大学理学院光信息科学与技术研究所,陕西省光信息技术重点实验室,陕西,西安,710072
摘    要:从三镜法布里-珀罗(F-P)腔出发,建立了非准直外腔三重回馈白混合干涉的理论模型,并进行了数值模拟和实验验证.分析了3种情况下影响自混合干涉光强调谐特性的因素:1)准直外腔二,三重回馈;2)非准直外腔二,三重回馈;3)外腔加入λ/4波片时的回馈.实验结果与理论分析相吻合.研究表明,该自混合干涉系统的分辨率达到λ/6;自混合干涉输出信号与腔反射镜的反射率、外腔的准直性以及腔内置入镜片有关;外腔中加入λ/4波片时的自混合干涉信号与非准直外腔自混合干涉信号类似;二,三重回馈自混合干涉信号携带了反射体位移方向信息,因而更易实现位移方向判断.

关 键 词:激光光学  自混合干涉  He-Ne激光器  非准直  二重回馈  三重回馈

Self-Mixing Interference of Non-Alignment Cavity He-Ne Laser
Wang Zhibing,Zhao Jianlin,Di Nan,Fu Minmin. Self-Mixing Interference of Non-Alignment Cavity He-Ne Laser[J]. Chinese Journal of Lasers, 2009, 36(11). DOI: 10.3788/CJL20093611.2842
Authors:Wang Zhibing  Zhao Jianlin  Di Nan  Fu Minmin
Abstract:Based on the Fabry-Perot (F-P) cavity model with three mirrors, the theoretical model of the triple feedback effect of non-alignment cavity was established, numerically simulated and experimentally validated. The factors affecting the power turning properties of the self-mixing interference were analyzed under three conditions:1) double and triple feedback effect of alignment cavity; 2) double and triple feedback effect of non-alignment cavity;3) the feedback effects when aλ/4 plate was inserted into the external cavity. The experimentsl results are in good agreement with theoretical analysis. It is shown that, the resolution of the self-mixing interference system can be up to λ/6; the self-mixing interference signal is related with the reflectance of the cavity mirror, the alignment of the cavity mirror and other plates in the external cavity; the self-mixing interference signal in condition (3) is similar to that of the non-alignment cavity; the information of the displacement direction of the reflector is contained in the self-mixing interference signal of double and triple feedback, so it could be easily distinguished.
Keywords:laser optics  self-mixing interference  He-Ne laser  non-alignment  double feedback  triple feedback
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