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Inverse axial mounting stiffness design for lithographic projection lenses

机译:光刻投影透镜的反向轴向安装刚度设计

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摘要

In order to balance axial mounting stiffness of lithographic projection lenses and the image quality under dynamic working conditions, an easy inverse axial mounting stiffness design method is developed in this article. Imaging quality deterioration at the wafer under different axial vibration levels is analyzed. The desired image quality can be determined according to practical requirements, and axial vibrational tolerance of each lens is solved with the damped least-squares method. Based on adaptive interval adjustment, a binary search algorithm, and the finite element method, the axial mounting stiffness of each lens can be traveled in a large interval, and converges to a moderate numerical solution which makes the axial vibrational amplitude of the lens converge to its axial vibrational tolerance. Model simulation is carried out to validate the effectiveness of the method.
机译:为了在动态工作条件下平衡光刻投影透镜的轴向安装刚度和图像质量,本文开发了一种简便的反向轴向安装刚度设计方法。分析了不同轴向振动水平下晶片的成像质量下降。可以根据实际需要确定所需的图像质量,并采用阻尼最小二乘法求解各透镜的轴向振动公差。基于自适应间隔调整,二元搜索算法和有限元方法,每个透镜的轴向安装刚度可以在较大的间隔内移动,并收敛到一个中等数值解,从而使透镜的轴向振动幅度收敛到它的轴向振动公差。进行模型仿真以验证该方法的有效性。

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