High-Efficiency Transmission Gratings Fabricated in Bulk Fused Silica

Hoang T. Nguyen, B. Shore, J. Britten, S. Bryan, S. Falabella, R. Boyd, Perry
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引用次数: 1

Abstract

High power ultraviolet lasers are now widely used in the semiconductor industry and inertial confinement fusion research, and are finding increased application in medical therapy. Whether based on excimers or frequency converted solid-state, high power ultraviolet lasers continue to be plagued by issues of optical damage and a limited choice of optical components for beam manipulation. In particular, system performance is often limited by the damage threshold of cavity and transport mirrors. Beam transport and steering based on refractive optics are limited not by surface damage as is the case with reflective systems but instead by bulk damage induced by two photon absorption, color center formation and self-focusing. These limitations can, in principle, be overcome in many applications by the use of transmission gratings fabricated in high damage threshold, transparent materials.
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大块熔融二氧化硅制备的高效透射光栅
高功率紫外激光器广泛应用于半导体工业和惯性约束聚变研究,并在医学治疗中得到越来越多的应用。无论是基于准分子还是基于固态的频率转换,高功率紫外激光器仍然受到光学损伤和光束操纵光学元件选择有限的问题的困扰。特别是,系统性能往往受到空腔和传输镜损伤阈值的限制。基于折射光学的光束传输和转向不像反射系统那样受到表面损伤的限制,而是受到双光子吸收、色心形成和自聚焦引起的体损伤的限制。原则上,这些限制可以在许多应用中通过使用高损伤阈值透明材料制造的透射光栅来克服。
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