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Antiferromagnetic spatial photonic Ising machine through optoelectronic correlation computing

Junyi Huang, Yisheng Fang, Zhichao Ruan

2021Communications Physics38 citationsDOIOpen Access PDF

Abstract

Abstract Recently, spatial photonic Ising machines (SPIM) have been demonstrated to compute the minima of Hamiltonians for large-scale spin systems. Here we propose to implement an antiferromagnetic model through optoelectronic correlation computing with SPIM. Also we exploit the gauge transformation which enables encoding the spins and the interaction strengths in a single phase-only spatial light modulator. With a simple setup, we experimentally show the ground-state-search acceleration of an antiferromagnetic model with 40000 spins in number-partitioning problem. Thus such an optoelectronic computing exhibits great programmability and scalability for the practical applications of studying statistical systems and combinatorial optimization problems.

Topics & Concepts

AntiferromagnetismIsing modelScalabilitySpinsComputer sciencePhotonicsMaxima and minimaPhysicsSpin (aerodynamics)Statistical physicsOptoelectronicsCondensed matter physicsMathematicsThermodynamicsMathematical analysisDatabaseNeural Networks and Reservoir ComputingQuantum Computing Algorithms and ArchitectureQuantum Information and Cryptography