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双频微片激光器的功率均衡机制实验研究 被引量:2

Experimental study about power balance mechanism in dual-frequency microchip lasers
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摘要 为了研究双频Nd∶YVO_4微片激光器的功率均衡机制,利用实验研究分析了微片激光器的抽运电流、工作温度和谐振波长等参量之间关系。不断增大双频激光器抽运电流,通过降低晶体温度不断重新实现双频激光功率的均衡,最终获得了不同抽运电流下的双频激光器的功率均衡温度,以及双频功率积与抽运电流的关系数据。结果表明,双频激光信号功率均衡温度与抽运电流呈分段负相关,双频功率积与抽运电流呈正相关。此结果说明通过改变抽运电流和温控温度可以实现功率可调的功率均衡的双频激光信号输出。 In order to investigate output power balance mechanism of Nd-YVO4 microchip dual-frequency lasers (DFL ) ,the relationships among pump current, operating temperature and dual-mode wavelengths of microchip lasers were analyzed bymeans of experiments. With the increase of pump current of DFL, the balance of DFL power was re-achieved by lowering thetemperature of laser crystal. Finally , the power-balanced temperature of DFL with different pump currents anbetween dual-frequency power product and pump current of DFL were obtained. The result shows thtemperature of DFL signal is negatively correlated with pump current sectionally , and dual frequency pcorrelated with pump current. It indicated that , power-balanced power-adjustable dual-frequency laser signal output can beachieved by changing pump current and controlling temperature.
作者 汪延安 柯一枝 崔恩楠 潘镔 蔡美伶 陈松 聂佳林 胡淼 WANG Yan' an;KE Yizhi;CUI Ennan;PAN Bin;CAI Meiling;CHEN Song;NIE Jialin;HU Miao(College of Communication Engineering,Hangzhou Dianzi University,Hangzhou 310018,China;College of Zhuoyue,Hangzhou Dianzi University,Hangzhou 310018,China;Materials Branch,Zhejiang Power Company,State Grid Corporation of China,Hangzhou 310018,China)
出处 《激光技术》 CAS CSCD 北大核心 2018年第5期651-654,共4页 Laser Technology
关键词 激光器 功率均衡调谐 抽运电流 温度控制 lasers power balance tuning pump current temperature control
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