标题: | 二维完美匹配层应用于多重解析法之光学微影模拟 Two-Dimensional Perfectly Matched Layer Applied to Multiresolution Time-Domain for optical lithography simulation |
作者: | 曾建彰 Jian-Zhang Zeng 罗正忠 Jen-Chung Lou 电子研究所 |
关键字: | 微影模拟;光罩;极化;多重解析法;完美匹配层;lithography simulation;mask;Polarization;MRTD;PML |
公开日期: | 2006 |
摘要: | 随着光微影技术向极限推进时,极化效应正变得更加明显[20]。由于横向电波和横向磁波之间结合的不同造成在图罩(photomask)表面的散射及在晶圆的极化使得成像品质降低[16]。因此我们需要以马克斯威尔方程式快速且精确的计算晶圆里的成像。 着眼此点,我们企图将完美匹配层(PML)应用在多重解析法。于是我们先找出一对Battle-Lemarie系的尺度和小波函数。在文献中[1][2],使用这个可以当作完整基底函数的集合被称为多重解析度分析。因此我们表明,将多重解析法应用于离散马克斯威尔方程式的新计画称为MRTD。在此篇论文中,为了简化我们将只使用尺度函数来开发模拟程式(S-MRTD)。除此之外我们将使用此程式搭配完美吸收边界层(PML)来模拟开放的二维相移图罩结构的绕射电磁分析。 Polarization effects are becoming more pronounced [20] as optical lithography technique is pushed towards its limit. Photomask topography scattering, and wafer polarization effects caused by differences in coupling between transverse electric and transverse magnetic waves degrade image quality.[16] Therefore we need to fast and rigorous calculation Latent images in wafer by Maxwell’s equations. To solve this problem,we attempt to apply’’ Perectly Matched Layer’’ (PML) to ‘’Multiresolution Time-Domain Method’’. Thus we find a pair of cubic spline Battle-Lemarie scaling and wavelet functions. In literature[1][2],the use of these functions as a complete set of basis functions is called multiresolution analysis. Thus we show that the application of multiresolution analysis in the method of moments for the discretization of Maxwell’s equations leads to new multiresolution time-domain (MRTD) schemes. In this paper, for simplicity, we will use the scaling function scheme(S-MRTD) only to develop simulation program. In addition, this program is applied to the rigorous simulation of diffraction from two-dimension open phase-shifting mask structure. Open boundaries are simulated by the use of a novel formulation of the perfect matching layer(PML) absorber. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009411547 http://hdl.handle.net/11536/80461 |
显示于类别: | Thesis |
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