Large-scale Ising emulation with four body interaction and all-to-all connections

Author:

Kumar Santosh,Zhang He,Huang Yu-Ping

Abstract

AbstractOptical Ising machines with two-body interactions have shown potential in solving combinatorial optimization problems which are extremely hard to solve with digital computers. Yet, some physical systems cannot be properly described by only two-body interactions. Here, we propose and demonstrate a nonlinear optics approach to emulate Ising machines containing many spins (up to a million in the absence of optical imperfections) and with tailored all-to-all two and four-body interactions. Our approach employs a spatial light modulator to encode and control the spins in the form of the binary-phase values, and emulates the high-order interaction with frequency conversion in a nonlinear crystal. By implementing adaptive feedback, the system can be evolved into effective spin configurations that well-approximate the ground-states of Ising Hamiltonians with all-to-all connected many-body interactions. Our technique could serve as a tool to probe complex, many-body physics and give rise to exciting applications in big-data optimization, computing, and analytics.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

Reference70 articles.

1. Liu, Q. et al. DNA computing on surfaces. Nature 403, 175–179 (2000).

2. Granan, L.-P. The Ising model applied on chronification of pain. Pain Med. 17, 5–9 (2016).

3. Mantegna, R. N. & Stanley, H. E. An Introduction to Econophysics: Correlations and Complexity in Finance (Cambridge Univ. Press, New York, 2000).

4. Stauffer, D. Social applications of two-dimensional Ising models. Am. J. Phys. 76, 470–473 (2008).

5. Garey, M. R. & Johnson, D. S. Computers and Intractability: A Guide to the Theory of NP-Completeness. (W. H. Freeman, Co., New York, 1990).

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