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Impact of Graybeam Method of Virtual Address Reduction on Image Quality

机译:减少虚拟地址的Graybeam方法对图像质量的影响

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In both optical and electron beam raster scan imaging for mask making or direct write on wafer, graybeam techniques are used to create a small virtual address grid while maintaining a large physical address grid. Using simple simulations of aerial image formation as the summation of Gaussian spots, several important conclusions about the use of graybeam are made. Graybeam results in a non-linear variation in edge position with gray level, with the non-linearity increasing with larger physical address grid size. While this edge position deviation from non-linearity can be calibrated out of the writing tool, the calibration curve is process dependent. One problem with the use of graybeam is the reduction of image quality as expressed by the image log-slope. For the case of a physical address grid equal to half of the spot size, the worst case graybeam level has an image log-slope at the edge that is 20% less than the best case.
机译:在用于掩模制造或在晶片上直接写入的光学和电子束光栅扫描成像中,使用灰光束技术来创建小的虚拟地址网格,同时保持较大的物理地址网格。使用简单的航空影像形成模拟作为高斯点的总和,得出了有关使用灰光束的几个重要结论。灰光束会导致边缘位置随灰度级别发生非线性变化,并且非线性随着物理地址网格大小的增大而增加。虽然可以从书写工具中校准与非线性的边缘位置偏差,但校准曲线取决于过程。使用灰光束的一个问题是图像对数斜率表示的图像质量降低。对于物理地址网格等于光斑大小一半的情况,最坏情况的灰光束级别在边缘的图像对数斜率比最佳情况小20%。

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