Bunkowski A, Burmeister O, Clausnitzer T, Kley E-B, Tünnermann A, Danzmann K, Schnabel R
Max-Planck-Institut für Gravitationsphysik (Albert-Einstein-Institut), Germany.
Appl Opt. 2006 Aug 10;45(23):5795-9. doi: 10.1364/ao.45.005795.
We report on the optical characterization of an ultrahigh diffraction efficiency grating in a first-order Littrow configuration. The apparatus used was an optical cavity built from the grating under investigation and an additional high-reflection mirror. The measurement of the cavity finesse provided precise information about the grating's diffraction efficiency and its optical loss. We measured a finesse of 1580 from which we deduced a diffraction efficiency of (99.635+/-0.016)% and an overall optical loss due to scattering and absorption of just 0.185%. Such high-quality gratings, including the tool used for their characterization, might apply for future gravitational wave detectors. For example, the demonstrated cavity itself presents an all-reflective, low-loss Fabry-Perot resonator that might replace conventional arm cavities in advanced high-power Michelson interferometers.
我们报道了一阶利特罗配置下超高衍射效率光栅的光学特性。所使用的装置是一个由被研究光栅和一个额外的高反射镜构成的光学腔。腔精细度的测量提供了有关光栅衍射效率及其光学损耗的精确信息。我们测量到的精细度为1580,由此推断出衍射效率为(99.635±0.016)%,且由于散射和吸收导致的总光学损耗仅为0.185%。这种高质量的光栅,包括用于其特性表征的工具,可能适用于未来的引力波探测器。例如,所展示的光学腔本身就是一个全反射、低损耗的法布里 - 珀罗谐振器,它可能会取代先进高功率迈克尔逊干涉仪中的传统臂腔。