论文标题
高像素编号可变形的镜像概念利用压电磁滞用于稳定形状配置
High pixel number deformable mirror concept utilizing piezoelectric hysteresis for stable shape configurations
论文作者
论文摘要
我们介绍了滞后镜(HDM)的概念设计和初始发展。 HDM是用于高级成像系统中波前校正的可变形镜的设计和操作的全新方法。关键的技术突破是将高度滞后的压电材料与简单的电极布局结合使用,以有效地定义单个执行器像素。 HDM的设置性质基于新开发的压电材料的较大残余变形,促进了时间分级多路复用(TDM)的使用来解决单个像素,而无需高更新频率以避免像素漂移。结合简单的电极布局,这为将高像素的数字($ \ geq 128 \ times 128 $)和像素密度($ 100/mm^2 $)变形镜(DMS)铺平了铺平的道路,这对于高空间频率波段跨度在某些最先进的系统中非常重要。
We present the conceptual design and initial development of the Hysteretic Deformable Mirror (HDM). The HDM is a completely new approach to the design and operation of deformable mirrors for wavefront correction in advanced imaging systems. The key technology breakthrough is the application of highly hysteretic piezoelectric material in combination with a simple electrode layout to efficiently define single actuator pixels. The set-and-forget nature of the HDM, which is based on the large remnant deformation of the newly developed piezo material, facilitates the use of time division multiplexing (TDM) to address the single pixels without the need for high update frequencies to avoid pixel drift. This, in combination with the simple electrode layout, paves the way for upscaling to extremely high pixel numbers ($\geq 128\times 128$) and pixel density ($100/mm^2$) deformable mirrors (DMs), which is of great importance for high spatial frequency wavefront correction in some of the most advanced imaging systems in the world.