基于光线传输理论对椭圆柱透镜及共轴双半椭圆柱透镜准直半导体激光光束的特性进行了研究。结果表明:这两种柱透镜的准直效率随折射率的变化不大,这在一定程度上提高了透镜材料选择的灵活性;并且理论上,共轴双半椭圆柱透镜可以将半导体...基于光线传输理论对椭圆柱透镜及共轴双半椭圆柱透镜准直半导体激光光束的特性进行了研究。结果表明:这两种柱透镜的准直效率随折射率的变化不大,这在一定程度上提高了透镜材料选择的灵活性;并且理论上,共轴双半椭圆柱透镜可以将半导体激光光束快轴方向的发散角压缩到0.1 m rad量级。展开更多
TH741 2006064975双半圆柱透镜准直半导体激光光束=Double half-cylindri- cal lens collimated beam of laser diode[刊,中]/马华(西安电子科技大学技术物理学院.陕西,西安(710071)),曾晓东…//中国激光.—2006,33(7).—937—940提...TH741 2006064975双半圆柱透镜准直半导体激光光束=Double half-cylindri- cal lens collimated beam of laser diode[刊,中]/马华(西安电子科技大学技术物理学院.陕西,西安(710071)),曾晓东…//中国激光.—2006,33(7).—937—940提出一种新的柱透镜结构:双半圆柱透镜(DHCL)。基于光线传输理论,导出该结构柱透镜准直激光光束的基本公式并给出数值模拟的结果。理论分析和数值模拟均表明,在用于准直半导体激光器输出光束方面,双半圆柱透镜突破了普通圆柱透镜在最佳准直时对透镜材料折射率的限制,提高了结构设计和材料选择的灵活性;展开更多
A wavefront method of measuring the thermal lensing of solid-state lasers is proposed.This method is easy to implement and has a high spatial resolution for diagnosing thermal lensing.By this method,the thermal lensin...A wavefront method of measuring the thermal lensing of solid-state lasers is proposed.This method is easy to implement and has a high spatial resolution for diagnosing thermal lensing.By this method,the thermal lensing of Nd:YAG laser is studied in detail.And this work provides a means for studying the thermal effects of laser medium and many instructional parameters for optimizing the design of the laser cavity.展开更多
文摘TH741 2006064975双半圆柱透镜准直半导体激光光束=Double half-cylindri- cal lens collimated beam of laser diode[刊,中]/马华(西安电子科技大学技术物理学院.陕西,西安(710071)),曾晓东…//中国激光.—2006,33(7).—937—940提出一种新的柱透镜结构:双半圆柱透镜(DHCL)。基于光线传输理论,导出该结构柱透镜准直激光光束的基本公式并给出数值模拟的结果。理论分析和数值模拟均表明,在用于准直半导体激光器输出光束方面,双半圆柱透镜突破了普通圆柱透镜在最佳准直时对透镜材料折射率的限制,提高了结构设计和材料选择的灵活性;
文摘A wavefront method of measuring the thermal lensing of solid-state lasers is proposed.This method is easy to implement and has a high spatial resolution for diagnosing thermal lensing.By this method,the thermal lensing of Nd:YAG laser is studied in detail.And this work provides a means for studying the thermal effects of laser medium and many instructional parameters for optimizing the design of the laser cavity.