红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2015年
7期
2093-2096
,共4页
张瑞%王志斌%王耀利%李克武
張瑞%王誌斌%王耀利%李剋武
장서%왕지빈%왕요리%리극무
零光程差%斜楔干涉具%光谱%ZnSe%仿真
零光程差%斜楔榦涉具%光譜%ZnSe%倣真
령광정차%사설간섭구%광보%ZnSe%방진
zero optical path difference%wedge interferometer%spectral%ZnSe%simulation
针对现有的静态斜楔干涉具无法实现零光程差,进而影响光谱反演的准确性和复杂性。文中提出一种可以实现零光程差的斜楔干涉具,通过对传统斜楔倾斜面的改进,使其可以实现被测光包含零光程差的干涉信号,理论推导了该斜楔不同位置的光程差公式,并推导得出对应的光谱反演公式;采用硒化锌(ZnSe)材料设计了该斜楔,对其干涉信号、光程差和光谱反演进行了仿真研究,并采用10.64μm激光器对其进行实验分析,实验结果显示该斜楔干涉信号清晰,光程差可以实现1450μm,反演光谱的误差为0.1%。
針對現有的靜態斜楔榦涉具無法實現零光程差,進而影響光譜反縯的準確性和複雜性。文中提齣一種可以實現零光程差的斜楔榦涉具,通過對傳統斜楔傾斜麵的改進,使其可以實現被測光包含零光程差的榦涉信號,理論推導瞭該斜楔不同位置的光程差公式,併推導得齣對應的光譜反縯公式;採用硒化鋅(ZnSe)材料設計瞭該斜楔,對其榦涉信號、光程差和光譜反縯進行瞭倣真研究,併採用10.64μm激光器對其進行實驗分析,實驗結果顯示該斜楔榦涉信號清晰,光程差可以實現1450μm,反縯光譜的誤差為0.1%。
침대현유적정태사설간섭구무법실현령광정차,진이영향광보반연적준학성화복잡성。문중제출일충가이실현령광정차적사설간섭구,통과대전통사설경사면적개진,사기가이실현피측광포함령광정차적간섭신호,이론추도료해사설불동위치적광정차공식,병추도득출대응적광보반연공식;채용서화자(ZnSe)재료설계료해사설,대기간섭신호、광정차화광보반연진행료방진연구,병채용10.64μm격광기대기진행실험분석,실험결과현시해사설간섭신호청석,광정차가이실현1450μm,반연광보적오차위0.1%。
Existing static wedge interferometer can not achieve zero optical path difference, thereby affecting the accuracy and speed of spectral inversion. Therefore, a method of achieving zero optical path difference by improving the wedge structure was put forward. By improving the structure of the inclined surface, the wedge can be achieved on the incident light interference signal which contains zero optical path difference. By deducing and analyzing the optical path difference of the arbitrary wedge position, and the formula of spectral inversion was deduced. Using Zinc Selenide(ZnSe) materials design and processing of the wedge, interference signal and the optical path difference was simulated, and the process of spectral inversion was simulated. The wedge was analyzed by experiments which used 10.64μm laser. Result shows that the interference signal clarity, optical path difference can reach 1 450μm, and the relative error of experiment is 0.1%.