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Simulation of deep UV lithography with SU-8 resist by using 365 nm light source

机译:SU-8抗蚀剂在365 nm光源下模拟深紫外光刻

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摘要

The deep lithography of thick resist layer is the primary step of LIGA technology. UV Proximity lithography, which is used to fabricate high aspect ratio MEMS normally, is investigated in this paper. The light intensity distribution in the thick photoresist layer mainly depends on the diffraction produced by the gap between mask and wafer in proximity lithography. Fresnel diffraction model is used to simulate lithography process normally, which the thin photoresist layer is used in the lithography process. But it is not accurate in deep lithography process. A correction to the Fresnel diffraction theory is used to simulate the lithography process depending on the scalar diffraction theory of light propagation in this paper. The difference of this two models is given in this paper. The simulation results show that the corrected model can obtain more accurate simulation results than the Fresnel diffraction model. The experiment results and the theory analysis both indicate that: the structure contrast decreases with the increase of the film thickness. The smaller the structure linewidth is, the faster the structure contrast decreases. The linewidth of microstructure is not equivalent from the top to the bottom, broaden in the middle part normally. The theory simulation gives the quantitative analysis.
机译:厚抗蚀剂层的深光刻是LIGA技术的第一步。本文研究了通常用于制造高深宽比MEMS的UV近距离光刻技术。厚光致抗蚀剂层中的光强度分布主要取决于在接近光刻中掩模和晶片之间的间隙所产生的衍射。通常使用菲涅耳衍射模型来模拟光刻过程,该光刻过程中使用薄光致抗蚀剂层。但这在深度光刻工艺中并不准确。本文根据光传播的标量衍射理论,对菲涅耳衍射理论进行了修正,以模拟光刻过程。本文给出了这两种模型的区别。仿真结果表明,与菲涅耳衍射模型相比,校正后的模型可以获得更准确的仿真结果。实验结果和理论分析均表明:结构对比度随膜厚的增加而减小。结构线宽越小,结构对比度下降越快。微观结构的线宽从上到下不等,通常在中间部分变宽。理论仿真给出了定量分析。

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