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Induced polarization imaging and other topics associated with the solid immersion lens.

机译:与固态浸没透镜相关的诱导偏振成像和其他主题。

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摘要

An induced evanescent polarization imaging system and associated topics using a solid immersion lens (SIL) are demonstrated in this dissertation.; The physics and properties of induced polarization signal of the SIL are studied by both simulations and experiments. In the SIL optical system, with a linearly-polarized incident illumination light at the entrance pupil, an orthogonal component of polarization is induced upon reflection from the SIL. This orthogonal polarization signal contains information of both air gap height h between the bottom of the SIL and the top surface of the sample. It is used as the air gap control signal in the SIL system.; An experimental SIL near-field microscope setup is developed and demonstrated. A compact mechanical package is developed for a standard microscope that implements a SIL on a retractable bimorph swing arm. With the compact package mounted on an inverted microscope, far-field and near-field images are obtained at the same location by moving the SIL with the swing arm. A 25 mum diameter and 0.8 mum high circular pedestal in the center of the flat portion of the SIL is fabricated, along with a conically shaped surrounding region.; The image contrast enhancement, high lateral resolution and height information are obtained with induced polarization evanescent imaging using SIL. Experiments are conducted by imaging features on a patterned Si substrate. Imaging theory is used to predict optimum orientation of high-spatial-frequency samples, and a topographical image is derived from the induced polarization image through a calibration procedure. A numerical aperture of NA=1.5 is used in the experiment. Height accuracy of +/- 2nm is demonstrated with a known sample.; A new lithography system employing a solid immersion lens (SIL) is proposed and primitive experiment results are presented. SIL technology is a direct-writing technique, where high resolution is easily achieved without a mask.
机译:本文介绍了一种使用固体浸没透镜(SIL)的瞬逝偏振成像系统及相关主题。通过仿真和实验研究了SIL的极化信号的物理特性。在SIL光学系统中,在入射光瞳处有线性偏振的入射照明光,当从SIL反射时会引起偏振的正交分量。此正交极化信号包含SIL底部和样品顶表面之间的气隙高度h的信息。在SIL系统中用作气隙控制信号。开发并演示了实验性SIL近场显微镜设置。开发了一种用于标准显微镜的紧凑型机械套件,该套件在可伸缩双压电晶片摆臂上实现了SIL。将紧凑型包装安装在倒置显微镜上,通过用摆臂移动SIL,可在同一位置获得远场和近场图像。在SIL的平坦部分的中心处制作了直径25毫米,高0.8毫米的圆形基座,以及一个圆锥形的周围区域。通过使用SIL的感应极化e逝成像,可以获得图像对比度增强,高横向分辨率和高度信息。通过在图案化的Si基板上成像特征来进行实验。成像理论用于预测高空间频率样本的最佳方向,并通过校准程序从诱导的偏振图像中得出地形图。实验中使用数值孔径为NA = 1.5。用已知样品证明高度精度为+/- 2nm。提出了一种采用固态浸没透镜(SIL)的新型光刻系统,并给出了原始实验结果。 SIL技术是一种直接写入技术,无需遮罩即可轻松实现高分辨率。

著录项

  • 作者

    Chen, Tao.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

  • 入库时间 2022-08-17 11:40:14

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