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极紫外无透镜傅里叶变换全息术

Extreme-ultraviolet lensless Fourier-transform holography.

作者信息

Lee S H, Naulleau P, Goldberg K A, Cho C H, Jeong S, Bokor J

机构信息

Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, Berkeley, California 94720, USA.

出版信息

Appl Opt. 2001 Jun 1;40(16):2655-61. doi: 10.1364/ao.40.002655.

Abstract

We demonstrate 100-nm-resolution holographic aerial image monitoring based on lensless Fourier-transform holography at extreme-UV (EUV) wavelengths, using synchrotron-based illumination. This method can be used to monitor the coherent imaging performance of EUV lithographic optical systems. The system has been implemented in the EUV phase-shifting point-diffraction interferometer recently developed at Lawrence Berkeley National Laboratory. Here we introduce the idea of the holographic aerial image-recording technique and present imaging performance characterization results for a 10x Schwarzschild objective, a prototype EUV lithographic optic. The results are compared with simulations, and good agreement is obtained. Various object patterns, including phase-shift-enhanced patterns, have been studied. Finally, the application of the holographic aerial image-recording technique to EUV multilayer mask-blank defect characterization is discussed.

摘要

我们展示了基于无透镜傅里叶变换全息术的100纳米分辨率全息空中图像监测,该监测在极紫外(EUV)波长下进行,使用基于同步加速器的照明。此方法可用于监测EUV光刻光学系统的相干成像性能。该系统已在劳伦斯伯克利国家实验室最近开发的EUV相移点衍射干涉仪中实现。在此,我们介绍全息空中图像记录技术的理念,并给出针对10倍施瓦兹希尔德物镜(一种EUV光刻光学原型)的成像性能表征结果。将结果与模拟进行比较,获得了良好的一致性。已经研究了各种物体图案,包括相移增强图案。最后,讨论了全息空中图像记录技术在EUV多层掩膜板缺陷表征中的应用。

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