Physics Department, International Laser Center, M. V. Lomonosov Moscow State University, Moscow 119992, Russia.
Department of Physics and Astronomy, Texas A&M University, College Station, TX, 77843, USA.
Sci Rep. 2017 Aug 24;7:46111. doi: 10.1038/srep46111.
We present a compact, uniform generalized Sellmeier-equation (GSE) description of air refraction and its dispersion that remains highly accurate within an ultrabroad spectral range from the ultraviolet to the long-wavelength infrared. While the standard Sellmeier equation (SSE) for atmospheric air is not intended for the description of air refractivity in the mid-infrared and long-wavelength infrared, failing beyond, roughly 2.5 μm, our generalization of this equation is shown to agree remarkably well with full-scale air-refractivity calculations involving over half a million atmospheric absorption lines, providing a highly accurate description of air refractivity in the range of wavelengths from 0.3 to 13 μm. With its validity range being substantially broader than the applicability range of the SSE and its accuracy being at least an order of magnitude higher than the accuracy that the SSE can provide even within its validity range, the GSE-based approach offers a powerful analytical tool for the rapidly progressing mid- and long-wavelength-infrared optics of the atmosphere.
我们提出了一种紧凑、统一的空气折射和色散广义Sellmeier 方程(GSE)描述,该描述在从紫外线到长波长红外的超宽光谱范围内仍然具有高度准确性。虽然标准的大气 Sellmeier 方程(SSE)不适用于中红外和长波长红外的空气折射描述,在大约 2.5μm 之外失效,但我们对该方程的推广与涉及超过 50 万个大气吸收线的全尺度空气折射计算非常吻合,从而在波长范围为 0.3 到 13μm 之间提供了空气折射的高度准确描述。与 SSE 的适用范围相比,其有效性范围要大得多,与 SSE 在其有效范围内提供的精度相比,其精度至少高一个数量级,因此基于 GSE 的方法为大气的快速发展的中波和长波红外光学提供了一种强大的分析工具。