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Silicon nitride deformable mirrors for focus and spherical aberration correction in micro -optical systems.

机译:氮化硅可变形反射镜,用于微光学系统中的聚焦和球差校正。

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摘要

Laser beam scanning systems benefit from dynamic focus control and aberration correction using a deformable mirror, enabling 3D real-time scanning. Designed for focus and spherical aberration control in optical beam scanning systems, these mirrors are capable of video rate bandwidths allowing real-time 3D imaging in micro-optical scanning systems. Field curvature aberration can also be corrected with the same mirror. Previous work with polysilicon deformable mirrors validated the concept of using specialized deformable optics in beam scanning systems. Fabrication of micro-optics in this dissertation was achieved using a modified surface micromachining technique with silicon nitride replacing polysilicon as the structural material. A bulk anisotropic silicon etch following a PSG release etch allows the creation of a variable cavity depth, overcoming the typical deformation limitations of standard surface micromachining. To perform as desired, parabolic curvature of the mirror surface is required with the ability to introduce positive and negative quartic curvature. Analytical theory showed that deformed simply supported plates have curvature closer to parabolic than deformed clamped plates. Segmentation and thinning of the perimeter was done to in order to emulate this simply supported boundary. Two annular actuation zones were implemented to give independent control over the second and fourth order curvatures. It was found that residual stress present in the silicon nitride structural plate improved the surface curvature and mechanical resonance at the expense of a larger actuation pressure. Mirrors with diameters of 1500, 1000, 750, and 300mum were built and tested. Zonal actuation with annular electrodes proved successful in providing sufficient correction of the mirror surface curvature, allowing spherical aberration free focus control. Perimeter segmentation greatly reduced required actuation loads allowing improved focal ranges. It was found that the sacrificial layer thickness has a significant impact on the initial curvature of the mirror. Sacrificial layers 0.2mum thick proved sufficient for release, improved device yield, and resulted in an initially flat mirror.
机译:激光束扫描系统受益于使用可变形镜的动态聚焦控制和像差校正,可实现3D实时扫描。这些反射镜专为光束扫描系统中的聚焦和球面像差控制而设计,具有视频速率带宽,可在微光学扫描系统中进行实时3D成像。像场弯曲像差也可以用同一反射镜校正。多晶硅可变形反射镜的先前工作验证了在光束扫描系统中使用专用可变形光学器件的概念。本文采用改进的表面微加工技术,以氮化硅代替多晶硅作为结构材料,实现了微光学的制备。 PSG释放蚀刻之后的块状各向异性硅蚀刻允许创建可变的腔深度,从而克服了标准表面微加工的典型变形限制。为了按需执行,需要镜面的抛物线曲率具有引入正和负四次曲率的能力。分析理论表明,变形的简单支撑板比变形的夹紧板的曲率更接近抛物线。为了模拟该简单支持的边界,对边界进行了分割和细化。实施了两个环形致动区域,以对二阶和四阶曲率进行独立控制。发现存在于氮化硅结构板上的残余应力以较大的致动压力为代价改善了表面曲率和机械共振。制作并测试了直径分别为1500、1000、750和300mum的镜子。事实证明,使用环形电极进行区域致动可以成功地对镜面曲率进行充分的校正,从而可以实现球差无焦点控制。周长分割大大减少了所需的致动负载,从而改善了焦距范围。发现牺牲层的厚度对反射镜的初始曲率具有显着影响。牺牲层0.2微米厚证明足以释放,提高了器件产量,并最终获得了平整的镜面。

著录项

  • 作者

    Himmer, Phillip Alexander.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:22

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