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衍射极限光学元件的热畸变

Thermal distortion of diffraction-limited optical elements.

作者信息

Quelle F W

机构信息

Office of Naval Research, 495 Summer Street, Boston, Massachusetts 02210, USA.

出版信息

Appl Opt. 1966 Apr 1;5(4):633-7. doi: 10.1364/AO.5.000633.

Abstract

Recent developments of laser materials have advanced the state of the art to a point where the optical quality of many of these materials is approaching the diffraction limit. Using such components in a laser does not necessarily guarantee the generation of diffraction-limited laser beams. One of the severe problems is thermal distortion introduced in the optical cavity by the flash lamps. Ruby and glass lasers require a minimum of 0.6 J of heat deposition per joule of population inversion. Typical figures are 4-6 J per joule of population inversion.(1) Nonuniformities in the deposition of this heat cause optical distortions which virtually preclude diffraction-limited laser operation even if the materials themselves are of diffraction-limited optical quality. This paper will investigate these thermal effects in detail, and the relative sensitivity of a variety of materials to nonuniform energy depositions will be discussed. Water close to its point of maximum density and a certain special type of glass known as Pockels glass will be shown to have properties of particular interest for use in diffraction-limited lasers.

摘要

激光材料的最新发展已将技术水平提升到了这样一个程度

许多此类材料的光学质量正接近衍射极限。在激光器中使用此类组件并不一定能保证产生衍射极限激光束。其中一个严重问题是闪光灯在光学腔中引入的热畸变。红宝石激光器和玻璃激光器每焦耳粒子数反转至少需要0.6焦耳的热沉积。典型数字是每焦耳粒子数反转4 - 6焦耳。(1) 这种热沉积的不均匀性会导致光学畸变,即使材料本身具有衍射极限光学质量,这实际上也排除了衍射极限激光运行。本文将详细研究这些热效应,并讨论各种材料对能量沉积不均匀性的相对敏感性。接近其最大密度点的水和一种被称为普克尔玻璃的特殊类型玻璃将被证明具有特别适用于衍射极限激光器的特性。

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