Li Bincheng, Cui Hao, Han Yanling, Gao Lifeng, Guo Chun, Gao Chunming, Wang Yafei
Opt Express. 2014 Nov 17;22(23):29135-42. doi: 10.1364/OE.22.029135.
Cavity ring down (CRD) technique was employed to measure optical losses (absorption and scattering losses), residual reflectance and transmittance of anti-reflectively (AR) coated laser components with transmittance higher than 99.9%. By inserting the AR coated laser component with parallel optical surfaces into the ring-down cavity and measuring the ring-down time versus the angle of incidence with respect to the surface normal, the optical loss and residual reflectance of the laser component were determined respectively at normal and out-of-normal incidences with repeatability of part-per-million level. The transmittance was also determined simultaneously. Experimental results demonstrated that CRD is a simple, inexpensive and fast technique for highly accurate measurements of optical loss, residual reflectance, and transmittance of AR coated laser components widely used in high-power laser systems.
采用腔衰荡(CRD)技术测量了透过率高于99.9%的增透(AR)涂层激光元件的光学损耗(吸收和散射损耗)、残余反射率和透过率。通过将具有平行光学表面的AR涂层激光元件插入衰荡腔,并测量衰荡时间与相对于表面法线的入射角的关系,分别在正入射和非正入射情况下测定了激光元件的光学损耗和残余反射率,其重复性达到百万分之一水平。同时还测定了透过率。实验结果表明,CRD是一种简单、廉价且快速的技术,可用于高精度测量高功率激光系统中广泛使用的AR涂层激光元件的光学损耗、残余反射率和透过率。