Simulations reveal that Raman nonlinearity converts pump phase noise into repetition-rate noise in soliton microcombs, producing a parabolic linewidth with a quiet point minimum, while other sources raise the noise floor.
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RetinaDiff uses phase correlation to create a motion-corrected physics prior and then applies a conditional diffusion model to reconstruct high-quality temporal LSCI from extremely limited frames.
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Mapping Source-Resolved Phase-Noise Transfer in Soliton Microcombs
Simulations reveal that Raman nonlinearity converts pump phase noise into repetition-rate noise in soliton microcombs, producing a parabolic linewidth with a quiet point minimum, while other sources raise the noise floor.
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Physics-Informed Conditional Diffusion for Motion-Robust Retinal Temporal Laser Speckle Contrast Imaging
RetinaDiff uses phase correlation to create a motion-corrected physics prior and then applies a conditional diffusion model to reconstruct high-quality temporal LSCI from extremely limited frames.