首页> 外文会议>Annual laser damage symposium >Laser-induced gas plasma etching of fused silica under ambient conditions
【24h】

Laser-induced gas plasma etching of fused silica under ambient conditions

机译:在环境条件下激光诱导的气体等离子体蚀刻熔融二氧化硅

获取原文

摘要

Laser machining of optics to mitigate surface defects has greatly enhanced the ability to process large optics such as those found in fusion-class lasers. Recently, the use of assist reactive gases has shown promise in enhancing manifold etching rates relative to ambient conditions for CW-laser exposures. However, these methods still require significant heating of the substrate that induce residual stres$, redeposit coverage, material flow, and compromise the final surface finish and damage threshold. While very reactive fluorinated gases are capable to reduce treatment temperatures even further, they are also inherently toxic and not readily transferable to large processing facilities. In this report, we look at whether a short-lived gas plasma could provide the safe and effective etchant sought, while still reducing the thermal load on the surface. We test this approach using a YAG laser-induced gas plasma to act as a source of the etchant for fused silica, a common optical material. The configuration and orientation of the beam and optical apparatus with respect to the surface was critical in preventing surface damage while etching the surface. Results with N_2 and air gas plasmas are shown, along with a description of the various experimental implementations attempted.
机译:光学光学光学用来减轻表面缺陷的电气加工大大提高了处理大型光学的能力,例如融合级激光器中的那些。最近,辅助反应气体的使用已经示出了相对于CW激光曝光的环境条件增强歧管蚀刻速率的承诺。然而,这些方法仍然需要大量加热诱导残留条钢$,重新停养覆盖,材料流动,并损害最终表面光洁度和损坏阈值。虽然非常活泼的氟化气体能够进一步减少治疗温度,但它们也具有固有的毒性,并且不容易转移到大型加工设施。在本报告中,我们看一下短寿命的气体等离子体可以提供安全有效的蚀刻剂,同时还减少了表面上的热负荷。我们使用YAG激光诱导的气体等离子体来测试这种方法,以用作熔融二氧化硅的蚀刻剂的源,普通光学材料。相对于表面的光束和光学设备的配置和取向对于在蚀刻表面时防止表面损坏至关重要。显示使用N_2和空气气体等离子体的结果,以及尝试的各种实验实施的描述。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号