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Mask-LMC: Lithographic Simulation and Defect Detection from High Resolution Mask Images

机译:Mask-LMC:来自高分辨率掩模图像的光刻模拟和缺陷检测

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We report the development of Mask-LMC for defect printability evaluation from sub-200nm wavelength mask inspection images. Both transmitted and reflected images are utilized, and both die-to-die and die-to-database inspection modes are supported. The first step of the process is to recover the patterns on the mask from high resolution T and R images by de-convolving inspection optical effects. This step uses a mask reconstruction model, which is based on rigorous Hopkins-modeling of the inspection optics, and is pre-determined before the full mask inspection. After mask reconstruction, wafer scanner optics and wafer resist simulations are performed on the reconstructed mask, with a wafer lithography model. This step leverages Brion's industry-proven, hardware-accelerated LMC (Lithography Manufacturability Check) technology. Existing litho process models that are in use for Brion's OPC+ and verification products may be used for this simulation. In the final step, special detectors are used to compare simulation results on the reference and defect dice. We have developed detectors for contact CD, contact area, line and space CD, and edge placement errors. The detection result has been validated with AIMS?.
机译:我们从低于200nm波长的掩模检查图像中报告了用于缺陷可印性评估的Mask-LMC的开发。既使用透射图像又使用反射图像,并且支持管芯到管芯和管芯到数据库的检查模式。该过程的第一步是通过使检测光学效果去卷积,从高分辨率的T和R图像中恢复掩模上的图案。此步骤使用掩模重建模型,该模型基于检查光学器件的严格霍普金斯模型,并在全面掩模检测之前预先确定。掩模重建后,利用晶片光刻模型在重建的掩模上执行晶片扫描仪光学器件和晶片抗蚀剂仿真。此步骤利用了Brion经过行业验证的,硬件加速的LMC(光刻可制造性检查)技术。用于Brion OPC +和验证产品的现有光刻工艺模型可用于此模拟。在最后一步中,将使用特殊的检测器来比较参考晶粒和缺陷晶粒的仿真结果。我们已经开发出用于接触CD,接触面积,线和空间CD以及边缘放置错误的检测器。检测结果已通过AIMS?验证。

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