Hori Yasuaki, Hirai Akiko, Minoshima Kaoru
Appl Opt. 2014 May 1;53(13):2793-801. doi: 10.1364/AO.53.002793.
A prism-pair interferometer for a spectrum lamp was developed for precise measurement of the refractive index of a prism of optical glass. Previously we reported the prism-pair interferometer with a He-Ne laser light source, resulting in a measurement uncertainty of 1.1×10⁻⁶. However, most of the refractive-index values managed by optical glass manufacturers are conventionally measured with spectrum lamps. We have optimized the prism-pair interferometer for spectrum lamps and implemented a signal-processing technique from Fourier-transform spectroscopy. When the refractive index is measured, the wavelength of the spectrum lamp is simultaneously calibrated by part of the interferometer, so that the resulting refractive index is traceable to a national standard of length. The combined standard uncertainty for a refractive index measured with the e-line (546 nm) of a Hg lamp is 6.9×10⁻⁶.
为了精确测量光学玻璃棱镜的折射率,研制了一种用于光谱灯的棱镜对干涉仪。此前我们报道了使用氦氖激光光源的棱镜对干涉仪,其测量不确定度为1.1×10⁻⁶。然而,光学玻璃制造商管理的大多数折射率值传统上是用光谱灯测量的。我们对用于光谱灯的棱镜对干涉仪进行了优化,并采用了傅里叶变换光谱学的信号处理技术。在测量折射率时,光谱灯的波长由干涉仪的一部分同时校准,从而使得到的折射率可溯源到国家标准长度。用汞灯的e线(546纳米)测量折射率时的合成标准不确定度为6.9×10⁻⁶。