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光纤微透镜用于阵列半导体激光器快轴准直研究 被引量:3

Experimental Study by Using the Micro-cylindrical Lens as the Fast Axis Collimator for Laser Diode Array
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摘要 文章采用石英光纤作为柱透镜,进行阵列半导体激光器的快轴准直实验研究,采用ISO推荐的光强二阶矩的方法,测量了发光面为1μm×150μm的阵列半导体激光器准直后的光束半径、远场发散角、束腰位置、瑞利长度,并根据测量结果计算了光束传输因子(M2因子)。以此为基础,研制了耦合光学系统,采用直径200μm柱面透镜准直后,阵列半导体激光器快轴方向发散角可减小到0.42,°系统准直耦合效率达到89%以上。 Using the micro-cylindrical lens as the fast axis collimator for laser diode array is studied. The fast axis collimator beam parameters measurement of laser diode array(LDA) with an emitting area of 1μm×150μm are measured by using the method of second order moment. The waist widths, divergences, waist positions, Rayleigh lengths and M2 factors of the LDA in x,y direction are determined. The fast axis divergence of LDA is reduced to 0.42°. Optical system for coupling of LDA is designed ,which yields coupling efficiency of above 89% for 200μm fiber respectively.
出处 《激光与红外》 CAS CSCD 北大核心 2005年第8期563-565,共3页 Laser & Infrared
关键词 半导体激光器 光束参数测量 快轴准直 M^2 因子 laser diode beam parameter measurement fast axis collimation M^2-factor
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参考文献2

  • 1Sun Wei, Gao Chunqing, Wei Guanghui. Processing applications in laser beam characterization [ A ]. Proc. SPIE,2001,4222 : 81.
  • 2International Standard organization. Test methods for laser beam parameters: beam widths, divergence angle and beam propagation factor[ S]. 1999, ISO 11146.

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