应用光学
應用光學
응용광학
JOURNAL OF APPLIED OPTICS
2015年
1期
93-97
,共5页
陈凤金%苏现军%马胜昔%孙永燕%阎凯
陳鳳金%囌現軍%馬勝昔%孫永燕%閻凱
진봉금%소현군%마성석%손영연%염개
湿热环境%减反射膜%可靠性%镀膜%吸收峰
濕熱環境%減反射膜%可靠性%鍍膜%吸收峰
습열배경%감반사막%가고성%도막%흡수봉
hygrothermal environment%antireflective films%reliability%coating%absorption peak
采用双面抛光的锗片为基底,镀制中波减反射膜,在湿热环境中分别持续24 h、2×24 h、3×24 h、4×24 h、5×24 h、?、12×24 h之后,研究了湿热环境对Ge基中波减反射膜的光学特性、牢固性等可靠性的影响。实验结果表明:在现有工艺条件下,所镀制的Ge基中波减反射膜经不同时间的湿热环境之后,透过率逐渐变低,并出现CO2和 H2 O的特征吸收峰,吸收峰是减反射膜长时间持续在湿热环境下CO2和 H2 O含量增大所致;湿热环境10×24 h后,边缘膜层开始出现脱落现象,12×24 h后,膜层平均透过率低于85%。
採用雙麵拋光的鍺片為基底,鍍製中波減反射膜,在濕熱環境中分彆持續24 h、2×24 h、3×24 h、4×24 h、5×24 h、?、12×24 h之後,研究瞭濕熱環境對Ge基中波減反射膜的光學特性、牢固性等可靠性的影響。實驗結果錶明:在現有工藝條件下,所鍍製的Ge基中波減反射膜經不同時間的濕熱環境之後,透過率逐漸變低,併齣現CO2和 H2 O的特徵吸收峰,吸收峰是減反射膜長時間持續在濕熱環境下CO2和 H2 O含量增大所緻;濕熱環境10×24 h後,邊緣膜層開始齣現脫落現象,12×24 h後,膜層平均透過率低于85%。
채용쌍면포광적타편위기저,도제중파감반사막,재습열배경중분별지속24 h、2×24 h、3×24 h、4×24 h、5×24 h、?、12×24 h지후,연구료습열배경대Ge기중파감반사막적광학특성、뢰고성등가고성적영향。실험결과표명:재현유공예조건하,소도제적Ge기중파감반사막경불동시간적습열배경지후,투과솔축점변저,병출현CO2화 H2 O적특정흡수봉,흡수봉시감반사막장시간지속재습열배경하CO2화 H2 O함량증대소치;습열배경10×24 h후,변연막층개시출현탈락현상,12×24 h후,막층평균투과솔저우85%。
Mid‐wave (MW ) antireflective films were coated on double‐side polished Ge sub‐strate ,and the films were experimented in hygrothermal environment for sustaining 24 h ,2 × 24 h ,3 × 24 h ,4 × 24 h ,5 × 24 h ,7 × 24 h ,? ,12 × 24 h ,respectively .The effects of hygrother‐mal environment on the reliability including transmittance and adhesion of Ge‐based M W an‐tireflective films were studied .The results indicate that ,the transmittance of MW antireflec‐tive films becomes lower gradually after sustained in the hygrothermal environment ,and the absorption peak of CO2 and H2 O turnes up ,resulted from the increase of the content of CO2 and H2 O in the films sustained under hygrothermal environment for enough time;The fringe of film becomes desquamated after 10 × 24 h in hygrothermal environment ,and from that time , the average transmittance is lower than 85% .