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February 23, 20260 citationsOpen Access

Photorefractive Frequency-Selective Relay: A Physically Instantiated Weight Architecture for Optical Computing

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PJPetřina Jaroslav

Key Points

  • To explore a novel photorefractive relay that uses physical index gratings for weight application in optical computing.
  • Proposes a photorefractive frequency-selective optical relay for computation.
  • Describes a two-stage demonstrator for the architecture.
  • Introduces three configurations for practical applications: quantum chemistry, AI inference, and optical I/O interface.
  • Introduces weight application at light speed and concentrated energy expenditure.
  • Demonstrates graceful degradation under damaging conditions.
  • Represents a fundamental shift in the relationship between computation and physics.

Abstract

Current neural network hardware simulates synaptic weights as floating-point numbersstored in silicon memory, applying them through sequential binary arithmetic. This paperproposes a fundamentally different computational primitive: the photorefractive frequencyselective optical relay, in which weights are physically instantiated as refractive indexgratings in crystalline material. Computation is not performed on physical signals — it isperformed by them, through Bragg diffraction at optical timescales. We describe the operatingprinciple, a tabletop two-stage demonstrator buildable for under 2,000, and three engineeringconfigurations: a quantum chemistry simulation substrate, a volumetric AI inference core,and a fully optical input/output interface that eliminates the digital conversion boundary.The architecture offers three properties unavailable in silicon: weight application at the speedof light, energy expenditure concentrated at weight-writing rather than weight-application,and graceful degradation under damage. These are not performance improvements — theyrepresent a categorical change in the relationship between computation and physics.

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Cite This Study

Petřina Jaroslav (2026) studied this question.

synapsesocial.com/papers/699ba05e72792ae9fd86fe2chttps://doi.org/10.5281/zenodo.18721984
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