2005
DOI: 10.1117/12.599999
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Layout compensation for EUV flare

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Cited by 21 publications
(12 citation statements)
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“…Due to the long-range effects of the flare PSF and the high complexity of I 0 , directly convolving the PSF with I 0 could be very computationally expensive. To tackle this problem, previous work has shown that dividing a layout into suitably sized grids (e.g., 1μm×1μm) and calculating the layout density for each grid can achieve a good approximation of I 0 [13,19]. Then, by convolving the generated density map I D (x, y) at the coordinate (x, y) with the discrete PSF(x, y), we can derive the flare map I F (x, y) of a layout as follows:…”
Section: Flare Map Computationmentioning
confidence: 99%
See 3 more Smart Citations
“…Due to the long-range effects of the flare PSF and the high complexity of I 0 , directly convolving the PSF with I 0 could be very computationally expensive. To tackle this problem, previous work has shown that dividing a layout into suitably sized grids (e.g., 1μm×1μm) and calculating the layout density for each grid can achieve a good approximation of I 0 [13,19]. Then, by convolving the generated density map I D (x, y) at the coordinate (x, y) with the discrete PSF(x, y), we can derive the flare map I F (x, y) of a layout as follows:…”
Section: Flare Map Computationmentioning
confidence: 99%
“…Although dummification may be constrained by layout patterns, the technique can significantly mitigate the flare level and the flare variation for the process with a clear-field mask [13]. In addition, dummification may also greatly simplify the flare compensation methodology with global CD resizing [10].…”
Section: Flare Reduction With Dummificationmentioning
confidence: 99%
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“…Both the long-range effects of the flare PSF and the high complexity of I0 make directly convolving the PSF with I0 very computationally expensive. To tackle this problem, previous work has shown that dividing a layout into suitably sized grid (e.g., 1μm × 1μm) and calculating the layout density for each grid can achieve a good approximation of I0 [17,23]. Then, by convolving the generated density map ID(x, y) at the coordinate (x, y) with the discrete PSF (x, y), we can derive the flare map IF (x, y) of a layout as follows:…”
Section: Flare Map Computationmentioning
confidence: 99%