Brimhall N, Heilmann N, Ware M, Peatross J
Department of Physics and Astronomy, Brigham Young University, Provo, Utah 84602, USA.
Opt Lett. 2009 May 1;34(9):1429-31. doi: 10.1364/ol.34.001429.
We demonstrate a technique for determining optical constants of materials in the extreme UV from the ratio of p-polarized to s-polarized reflectance. The measurements are based on laser-generated high-order harmonics, which have easily rotatable linear polarization but that are prone to brightness fluctuations and systematic drifts during measurement. Rather than measure the absolute reflectance, we extract the optical constants of a material from the ratio of p-polarized to s-polarized reflectance at multiple incident angles. This has the advantage of dividing out long-term fluctuations and possible systematic errors. We show that the reflectance ratio is as sensitive as the absolute reflectance to material optical properties.
我们展示了一种通过p偏振与s偏振反射率之比来确定极紫外波段材料光学常数的技术。这些测量基于激光产生的高次谐波,其具有易于旋转的线性偏振,但在测量过程中容易出现亮度波动和系统漂移。我们并非测量绝对反射率,而是在多个入射角下从p偏振与s偏振反射率之比中提取材料的光学常数。这样做的优点是消除了长期波动和可能的系统误差。我们表明,反射率之比对材料光学性质的敏感度与绝对反射率相同。