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卤化银多晶光纤传输CO_2激光性能的研究 被引量:12

Characteristics of Polycrystalline Silver Halide Fiber for Transmitting CO_2 Laser
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摘要 通过采用高真空熔炼、反应气氛下区域融熔和高真空石英安瓿内单晶生长等特殊工艺方法对卤化银原料进行提纯,并用热挤压成型方法制得卤化银光纤.本文研究了卤化银原料的提纯和光纤成型工艺对损耗的影响,研究结果表明,增加提纯次数可降低卤化银光纤预制棒的吸收系数.通过合理控制工艺参数,提纯后的卤化银原料制成的光纤预制棒,经CO2激光量热计法测量在10.6μm处的吸收系数<5×10-4cm-1,热挤压成型的光纤在10.6μm处的损耗为0.3~0.5dB/m,直径φ10mm、长度1.64m的光纤可传输CO2激光功率>20W. The silver halide was purified by melting at high vacuum, zone melting with reactiveatmosphere and crystal growing in quartz ampoule with high vacuum. The silver halide fibers weremade by hot extrusion. The effects of the purification of silver halide and its fiber preparationmethod on transmission loss were studied. Experiment results show that the increase of the numberof times of the starting material purification will cause the decrease of absorption coefficient of silverhalide preform. A high quality preform was obtained by a reasonable technology. The absorptioncoefficient of the purified silver halide preform measured by CO_2 laser calorimeter is less than5×10^-4cm^-l. The transmission loss of the silver halide fiber is 0.3~0.5dB/m when measured byCO_2 laser beam at 10.6μm. Its output power of transmitting CO_2 laser beam is more than 20Win the fiber of 1.0mm diameter and l.64m length.
出处 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2000年第1期119-123,共5页 Journal of Inorganic Materials
基金 八六三计划新材料领域资助项目!715-001-0211
关键词 红外光纤 卤化银 光纤传输 二氧化碳 激光性 infrared optical fiber silver halide loss
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参考文献8

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