Suppr超能文献

用于长程光谱学的像散镜多程吸收池。

Astigmatic mirror multipass absorption cells for long-path-length spectroscopy.

作者信息

McManus J B, Kebabian P L, Zahniser M S

出版信息

Appl Opt. 1995 Jun 20;34(18):3336-48. doi: 10.1364/AO.34.003336.

Abstract

A multipass absorption cell, based on an astigmatic variant of the off-axis resonator (Herriott) configuration, has been designed to obtain long path lengths in small volumes. Rotation of the mirror axes is used to obtain an effective adjustability in the two mirror radii. This allows one to compensate for errors in mirror radii that are encountered in manufacture, thereby generating the desired reentrant patterns with less-precise mirrors. Acombination of mirror rotation and separation changes can be used to reach a variety of reentrant patterns and path lengths with a fixed set of astigmatic mirrors. The accessible patterns can be determined from trajectories, as a function of rotation and separation, through a general map of reentrant solutions. Desirable patterns for long-path spectroscopy can be chosen on the basis of path length, distance of the closest beam spot from the coupling hole, and tilt insensitivity. We describe the mathematics and analysis methods for the astigmatic cell with mirror rotation and then describe the design and test of prototype cells with this concept. Two cell designs are presented, a cell with 100-m path length in a volume of 3 L and a cell with 36-m path length in a volume of 0.3 L. Tests of low-volume absorption cells that use mirror rotation, designed for fast-flow atmospheric sampling, show the validity and the usefulness of the techniques that we have developed.

摘要

一种基于离轴谐振器(赫里奥特)配置的像散变体的多程吸收池已被设计出来,以在小体积内获得长光程。利用镜轴的旋转来实现两个镜半径的有效可调性。这使得人们能够补偿制造过程中镜半径出现的误差,从而用精度较低的镜子产生所需的折返模式。镜旋转和间距变化的组合可用于使用一组固定的像散镜实现各种折返模式和光程。可通过折返解的通用映射,根据旋转和间距从轨迹确定可达模式。对于长光程光谱学,可根据光程、最靠近耦合孔的束斑距离和倾斜不敏感性来选择理想模式。我们描述了带有镜旋转的像散池的数学和分析方法,然后描述了基于这一概念的原型池的设计和测试。给出了两种池设计,一种是在3升体积内具有100米光程的池,另一种是在0.3升体积内具有36米光程的池。为快速流动大气采样设计的使用镜旋转的小体积吸收池的测试,证明了我们所开发技术的有效性和实用性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验