Phase-space simulations of feedback coherent Ising machines
arXiv:2105.04190 · doi:10.1364/OL.434114
Abstract
A new technique is demonstrated for carrying out exact positive-P phase-space simulations of the coherent Ising machine quantum computer. By suitable design of the coupling matrix, general hard optimization problems can be solved. Here, computational quantum simulations of a feedback type of photonic parametric network are carried out, which is the implementation of the coherent Ising machine. Results for success rates are obtained using this scalable phase-space algorithm for quantum simulations of quantum feedback devices.
5 pages, 2 figures
References in corpus (5)
- A Straightforward Introduction to Continuous Quantum Measurement
- Network of Time-Multiplexed Optical Parametric Oscillators as a Coherent Ising Machine
- A Quantum Model for Coherent Ising Machines: Discrete-time Measurement Feedback Formulation
- Simulating complex networks in phase space: Gaussian boson sampling
- A Quantum Model for Coherent Ising Machine: Stochastic Differential Equations with Replicator Dynamics