AAA rational approximation for scatterometry of nanoscale gratings
Livius Leibl, Viktoriia Sytenko, Rana Demircioglu, Leonid Beliaev, Felix Binkowski
Abstract
We investigate the applicability of AAA rational approximation to scatterometry-related response functions of nanoscale gratings. A silicon line grating with material dispersion is considered. We compare the convergence of AAA rational approximation with that of cubic spline interpolation as the number of frequency samples is increased. The results demonstrate the potential of rational approximation, consistent with the pole structure of the considered response function arising from resonance effects of the grating.
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