红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2014年
2期
360-364
,共5页
潘其坤%谢京江%谢冀江%张来明%阮鹏%杨贵龙%郭劲
潘其坤%謝京江%謝冀江%張來明%阮鵬%楊貴龍%郭勁
반기곤%사경강%사기강%장래명%원붕%양귀룡%곽경
DF激光器%增益分布%变耦合率法%二维插值
DF激光器%增益分佈%變耦閤率法%二維插值
DF격광기%증익분포%변우합솔법%이유삽치
DF laser%gain distribution%variable output coupling method%two-dimensional interpolation algorithm
为了研究非链式脉冲DF激光器的增益分布特性,在考虑谱线碰撞加宽和多普勒加宽对增益系数影响的基础上,运用变耦合率法给出了计算增益系数的简便公式。利用光阑移动扫描采样法,实验测量了不同输出镜透过率条件下DF激光器增益区横截面上各采样点的激光输出功率。对于每个采样点,计算得到两个独立的增益系数,其标准差小于3%。激光平均增益系数为2.5943 m-1,非输出损耗系数为1.2435 m-1。对各采样点的增益系数进行二维插值,结果显示在激光增益区横截面上增益系数呈现中央高、边缘低的超高斯分布。研究成果可为非链式脉冲DF激光器谐振腔和电极结构设计提供依据,并可为该激光器的气体放电均匀性分析提供参考。
為瞭研究非鏈式脈遲DF激光器的增益分佈特性,在攷慮譜線踫撞加寬和多普勒加寬對增益繫數影響的基礎上,運用變耦閤率法給齣瞭計算增益繫數的簡便公式。利用光闌移動掃描採樣法,實驗測量瞭不同輸齣鏡透過率條件下DF激光器增益區橫截麵上各採樣點的激光輸齣功率。對于每箇採樣點,計算得到兩箇獨立的增益繫數,其標準差小于3%。激光平均增益繫數為2.5943 m-1,非輸齣損耗繫數為1.2435 m-1。對各採樣點的增益繫數進行二維插值,結果顯示在激光增益區橫截麵上增益繫數呈現中央高、邊緣低的超高斯分佈。研究成果可為非鏈式脈遲DF激光器諧振腔和電極結構設計提供依據,併可為該激光器的氣體放電均勻性分析提供參攷。
위료연구비련식맥충DF격광기적증익분포특성,재고필보선팽당가관화다보륵가관대증익계수영향적기출상,운용변우합솔법급출료계산증익계수적간편공식。이용광란이동소묘채양법,실험측량료불동수출경투과솔조건하DF격광기증익구횡절면상각채양점적격광수출공솔。대우매개채양점,계산득도량개독립적증익계수,기표준차소우3%。격광평균증익계수위2.5943 m-1,비수출손모계수위1.2435 m-1。대각채양점적증익계수진행이유삽치,결과현시재격광증익구횡절면상증익계수정현중앙고、변연저적초고사분포。연구성과가위비련식맥충DF격광기해진강화전겁결구설계제공의거,병가위해격광기적기체방전균균성분석제공삼고。
In order to investigate the gain distribution characteristic of non-chain pulsed DF laser, based on the influence of collision widen and Doppler widen of spectrum on gain coefficient, the simple equations were given to calculate the gain coefficient using the variable output coupling method. Under the conditions of different output mirror transmission, utilizing the method of moving iris to scan sample, the DF laser output power of every sampling position had been measured on the cross-section of gain medium. For arbitrary sampling position, two independent gain coefficients were calculated which standard deviation was less than 3%. Average gain coefficient of DF laser was 2.594 3 m-1 and the non-output loss coefficient was 1.243 5 m-1. For gain coefficients of each sampling position, two-dimensional interpolation algorithm had been used to obtain gain distribution on the cross-section of gain medium. The calculation showed that the gain coefficients submitted to supper-Gauss-Poisson distribution which was high in the central and low in the margin. The investigation could provide a guide to design resonator and electrode structure of non-chain pulse DF laser, and provide a reference to analyze the uniformity of gas discharge of this laser.