Xiao Min, Cao Axiu, Xu Cheng, Pang Hui, Fu Yongqi, Deng Qiling
School of Physics, University of Electronic Science and Technology of China, Chengdu 610054, China.
Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China.
Micromachines (Basel). 2024 Jul 25;15(8):952. doi: 10.3390/mi15080952.
The light homogenizing element is a crucial component of the illumination system of the lithography machine. Its primary purpose is to realize the uniform distribution of energy. However, it suffers from a common issue, which is angular spectrum discreteness, which significantly impacts light uniformity. To address this, we design and fabricate random micro-cylindrical lens arrays to obtain a small-angle Gaussian optical field, which can compensate for the angular spectrum discreteness. By adjusting the pitches and curvature radii of the micro-cylindrical lenses separately, we are able to manipulate the divergence angle of the emitted sub-beams, enabling precise angular spectrum modulation. By using mask-moving technology, the angular spectrum modulator is fabricated to generate a Gaussian illumination field. The surface profile is measured and determined with a structural roughness below 10 nm. Furthermore, optical test experiments on the modulator have been conducted, achieving an angle error of less than 0.02° and a balance better than 0.5%.
光均匀化元件是光刻机照明系统的关键部件。其主要目的是实现能量的均匀分布。然而,它存在一个常见问题,即角谱离散,这对光均匀性有显著影响。为了解决这个问题,我们设计并制造了随机微圆柱透镜阵列,以获得小角度高斯光场,从而可以补偿角谱离散。通过分别调整微圆柱透镜的间距和曲率半径,我们能够控制出射子光束的发散角,实现精确的角谱调制。利用掩膜移动技术制造角谱调制器,以产生高斯照明场。测量并确定其表面轮廓,结构粗糙度低于10纳米。此外,还对角谱调制器进行了光学测试实验,角度误差小于0.02°,平衡度优于0.5%。