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RETICOLO software for grating analysis
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RETICOLO software for grating analysis
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RETICOLO is a freeware that implements the rigorous coupled wave analysis (RCWA) for 1D (classical and conical diffraction) and 2D crossed gratings. It operates under a MATLAB environment and incorporates an efficient and accurate toolbox for computing Bloch modes and visualizing the electromagnetic field in the grating region. As a spin-off, the Version V9 and the following ones include a toolbox for the analysis of stacks of arbitrarily anisotropic multilayered thin-films.
Forward citations
Cited by 6 Pith papers
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Antireflection by design in bilayer metasurfaces
Bilayer metasurfaces achieve full 0-2π transmission phase coverage while suppressing reflections below bare glass levels via a derived design rule linking effective indices of two TiO2 layers.
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Multi-wavelength polarisation imaging with inverse designed metasurfaces
Metasurface diffractively separates scenes into spectral and polarimetric measurements for single-shot multispectral polarization imaging at two wavelengths with experimental demonstration of robustness.
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Physics-constrained neural networks for surrogate modeling of lossless periodic structures
A physics-constrained neural network predicts RCWA Jones matrices for lossless periodic structures by enforcing the Stiefel manifold constraint via differentiable symmetric orthogonalization.
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Gradient-based optimization of scatterer arrangements based on the T-matrix method
A differentiable T-matrix multiple-scattering framework enables gradient-based inverse design of scatterer positions and radii in finite clusters and periodic metasurfaces.
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Extrinsic Limitations of Stealthy Hyperuniform devices
Stealthy hyperuniform metasurfaces quench diffuse scattering only ~10-100× in practice, not the ~100,000× predicted from ideal structure factors, because of finite size, polydispersity, and multiple scattering.
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Comment on "Angle insensitive filters based on Fabry-Perot resonance structures" [J. Appl. Phys. 136, 193102 (2024)]
Comment paper reports failed replication of angle-independent Fabry-Perot metasurface filters and attributes original results to erroneous simulation boundary conditions.
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