Perturbative programming reduces phase-shift ranges in photonic matrix-vector multiplication by operating near reference configurations and using subtraction, with phase distributions shrinking for larger matrices.
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A protocol maps arbitrary linear transformations to coin and step operators of a quantum walk, then to experimental settings in a time-multiplexed hybrid photonic platform, with claims of scalability and resilience to imperfections.
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Perturbative photonic matrix-vector multiplication with reduced phase-shift range
Perturbative programming reduces phase-shift ranges in photonic matrix-vector multiplication by operating near reference configurations and using subtraction, with phase distributions shrinking for larger matrices.
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Resource-efficient universal photonic processor based on time-multiplexed hybrid architectures
A protocol maps arbitrary linear transformations to coin and step operators of a quantum walk, then to experimental settings in a time-multiplexed hybrid photonic platform, with claims of scalability and resilience to imperfections.