激光技术
激光技術
격광기술
LASER TECHNOLOGY
2009年
4期
440-442,445
,共4页
邵俊平%吴福全%郝殿中%洪芳
邵俊平%吳福全%郝殿中%洪芳
소준평%오복전%학전중%홍방
物理光学%分束角和光强分束比%比较分析%分束李普奇棱镜%分束格兰-汤普逊棱镜
物理光學%分束角和光彊分束比%比較分析%分束李普奇稜鏡%分束格蘭-湯普遜稜鏡
물리광학%분속각화광강분속비%비교분석%분속리보기릉경%분속격란-탕보손릉경
physical optics%splitting angle and splitting ratio of light intensity%comparison analysis%splitting Lippich prism%splitting Grand-Thompson prism
为了更好地设计和选择使用分束李普奇棱镜和分束格兰-汤普逊棱镜,从理论上分析了分束李普奇棱镜与分束格兰-汤普逊棱镜的分束角、分离角和光强分束比.结果表明,分束李普奇棱镜和分束格兰-汤普逊棱镜的分束角和光强分束比与棱镜的结构角和副结构角有关;对于相同的结构角和副结构角,两种棱镜的分束角相同,但它们的光强分束比不同.出射的o光与e′光的分离角与副结构角有关;对于o光垂直出射的需要,选用分束李普奇棱镜设计为好;对于大分束角的需要,选用分束格兰-汤普逊棱镜设计为好.选用最佳设计方案可以分别实现两种棱镜光强的对称分束,实验结果与理论计算相符.
為瞭更好地設計和選擇使用分束李普奇稜鏡和分束格蘭-湯普遜稜鏡,從理論上分析瞭分束李普奇稜鏡與分束格蘭-湯普遜稜鏡的分束角、分離角和光彊分束比.結果錶明,分束李普奇稜鏡和分束格蘭-湯普遜稜鏡的分束角和光彊分束比與稜鏡的結構角和副結構角有關;對于相同的結構角和副結構角,兩種稜鏡的分束角相同,但它們的光彊分束比不同.齣射的o光與e′光的分離角與副結構角有關;對于o光垂直齣射的需要,選用分束李普奇稜鏡設計為好;對于大分束角的需要,選用分束格蘭-湯普遜稜鏡設計為好.選用最佳設計方案可以分彆實現兩種稜鏡光彊的對稱分束,實驗結果與理論計算相符.
위료경호지설계화선택사용분속리보기릉경화분속격란-탕보손릉경,종이론상분석료분속리보기릉경여분속격란-탕보손릉경적분속각、분리각화광강분속비.결과표명,분속리보기릉경화분속격란-탕보손릉경적분속각화광강분속비여릉경적결구각화부결구각유관;대우상동적결구각화부결구각,량충릉경적분속각상동,단타문적광강분속비불동.출사적o광여e′광적분리각여부결구각유관;대우o광수직출사적수요,선용분속리보기릉경설계위호;대우대분속각적수요,선용분속격란-탕보손릉경설계위호.선용최가설계방안가이분별실현량충릉경광강적대칭분속,실험결과여이론계산상부.
In order to design and use the splitting Lippich prism and the splitting Grand-Thompson prism,the splitting angle,separation angle and splitting ratio of light intensity were analyzed.The results show:the splitting angle and splitting ratio of light intensity of the splitting Lippich prism and the splitting Grand-Thompson prism are dependent on the structure angle and the vice structure angle;both the prisms have the same splitting angle and different light intensity splitting ratios if they have the same structure angle and vice structure angle.The separation angle about beam o and beam e′ is dependent on the vice structure angle:the design of splitting Lippich prism is better for the need of normal output of beam o;the design of splitting Grand-Thompson prism is better for the need of a big splitting angle.With optimum design symmetric beam splitting of light intensity can be achieved for both the prisms.The experiment data are in accordance with the theoretical results.