English

Networks of non-equilibrium condensates for global optimization

Classical Physics 2018-11-16 v5 Other Condensed Matter Computational Physics Quantum Physics

Abstract

Recently several gain-dissipative platforms based on the networks of optical parametric oscillators, lasers, and various non-equilibrium Bose-Einstein condensates have been proposed and realised as analogue Hamiltonian simulators for solving large-scale hard optimisation problems. However, in these realisations the parameters of the problem depend on the node occupancies that are not known a priori, which limits the applicability of the gain-dissipative simulators to the classes of problems easily solvable by classical computations. We show how to overcome this difficulty and formulate the principles of operation of such simulators for solving the NP-hard large-scale optimisation problems such as constant modulus continuous quadratic optimisation and quadratic binary optimisation for any general matrix. To solve such problems any gain-dissipative simulator has to implement a feedback mechanism for the dynamical adjustment of the gain and coupling strengths.

Keywords

Cite

@article{arxiv.1805.01371,
  title  = {Networks of non-equilibrium condensates for global optimization},
  author = {Kirill P. Kalinin and Natalia G. Berloff},
  journal= {arXiv preprint arXiv:1805.01371},
  year   = {2018}
}

Comments

Accepted version