Optimized nanobeam cavities with fins achieve Q-factors up to 70,000 and outcoupling efficiencies above 90%, with fabricated passive InP devices reaching record Q-factors of 170,000 without fins.
Minkov , author I
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PyMieDiff provides a new open-source PyTorch library for fully differentiable Mie scattering from layered spheres, with autograd support for efficiencies, angular patterns, and near-fields.
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Nanobeam Laser Cavities with High Quality-factor and Near-Unity Outcoupling Efficiency
Optimized nanobeam cavities with fins achieve Q-factors up to 70,000 and outcoupling efficiencies above 90%, with fabricated passive InP devices reaching record Q-factors of 170,000 without fins.
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PyMieDiff: A differentiable Mie scattering library
PyMieDiff provides a new open-source PyTorch library for fully differentiable Mie scattering from layered spheres, with autograd support for efficiencies, angular patterns, and near-fields.