首页> 外文会议>Advances in Adaptive Optics II pt.2 >Deformable Nanolaminate Optics
【24h】

Deformable Nanolaminate Optics

机译:可变形纳米层压光学

获取原文
获取原文并翻译 | 示例

摘要

We are developing a new class of deformable optic based on electrostatic actuation of nanolaminate foils. These foils are engineered at the atomic level to provide optimal opto-mechanical properties, including surface quality, strength and stiffness, for a wide range of deformable optics. We are combining these foils, developed at Lawrence Livermore National Laboratory (LLNL), with commercial metal processing techniques to produce prototype deformable optics with aperture sizes up to 10 cm and actuator spacing from 1 mm to 1 cm and with a range of surface deformation designed to be as much as 10 microns. The existing capability for producing nanolaminate foils at LLNL, coupled with the commercial metal processing techniques being used, enable the potential production of these deformable optics with aperture sizes of over 1 m, and much larger deformable optics could potentially be produced by tiling multiple deformable segments. In addition, based on the fabrication processes being used, deformable nanolaminate optics could potentially be produced with areal densities of less than 1 kg per square m for applications in which lightweight deformable optics are desirable, and deformable nanolaminate optics could potentially be fabricated with intrinsically curved surfaces, including aspheric shapes. We will describe the basic principles of these devices, and we will present details of the design, fabrication and characterization of the prototype deformable nanolaminate optics that have been developed to date. We will also discuss the possibilities for future work on scaling these devices to larger sizes and developing both devices with lower areal densities and devices with curved surfaces.
机译:我们正在开发基于纳米层压箔片静电驱动的新型可变形光学器件。这些箔在原子级别进行了工程设计,可为各种可变形光学器件提供最佳的光机械性能,包括表面质量,强度和刚度。我们将这些由劳伦斯·利弗莫尔国家实验室(LLNL)开发的箔片与商业金属加工技术相结合,以生产原型可变形光学器件,其孔径最大为10 cm,执行器间距为1 mm至1 cm,并设计了一系列表面变形高达10微米。 LLNL生产纳米层压箔的现有能力,再加上所使用的商业金属加工技术,使得有可能生产出孔径大于1 m的这些可变形光学器件,并且通过将多个可变形段拼接在一起,可以潜在地生产出更大的可变形光学器件。另外,基于所使用的制造工艺,对于可能需要轻型可变形光学器件的应用,潜在地可产生面密度小于每平方米1千克的可变形纳米层压光学器件,并且可潜在地制造具有固有弯曲特性的可变形纳米层压光学器件。表面,包括非球面形状。我们将描述这些设备的基本原理,并且将介绍迄今为止已开发的原型可变形纳米层压光学器件的设计,制造和表征细节。我们还将讨论将来将这些设备缩放到更大尺寸并开发具有较低面密度的设备和具有曲面的设备的可能性。

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