Subsurface Damage Measurements of Opticam-generated Infrared Materials

K. Cerqua-Richardson, S. Schmidt, J. Vakiner
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Abstract

The optical fabrication time associated with an optical component’s production most often dictates its final cost. Historically, art-driven conventional fabrication techniques used to produce infrared (IR) optics were labor-intensive, making the costs of such components prohibitive. Alternate, lower cost, fabrication technologies based on automated machine systems such as diamond turning, have been shown to be effective in generating high quality optical surfaces for some non-brittle materials. During the past year, fabrication techniques employing Opticam microgrinding technology have been demonstrated for glass and crystalline visible and infrared optical materials resulting in optical surfaces exhibiting superb figure, low roughness and subsurface damage.
光学红外材料的亚表面损伤测量
与光学元件生产相关的光学制造时间通常决定其最终成本。从历史上看,艺术驱动的传统制造技术用于生产红外(IR)光学器件是劳动密集型的,这使得这些组件的成本令人望而却步。替代的、低成本的、基于自动化机器系统的制造技术,如金刚石车削,已被证明可以有效地为一些非脆性材料产生高质量的光学表面。在过去的一年中,采用Opticam微磨削技术的制造技术已经被证明用于玻璃和晶体可见光和红外光学材料,从而使光学表面具有出色的图形,低粗糙度和亚表面损伤。
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