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Open AccessJournal ArticleDOI

An electromechanical Ising Hamiltonian

TLDR
These results suggest that an electromechanical simulator could be built for the Ising Hamiltonian in a nontrivial configuration, namely, for a large number of spins with multiple degrees of coupling.
Abstract
Solving intractable mathematical problems in simulators composed of atoms, ions, photons, or electrons has recently emerged as a subject of intense interest. We extend this concept to phonons that are localized in spectrally pure resonances in an electromechanical system that enables their interactions to be exquisitely fashioned via electrical means. We harness this platform to emulate the Ising Hamiltonian whose spin 1/2 particles are replicated by the phase bistable vibrations from the parametric resonances of multiple modes. The coupling between the mechanical spins is created by generating two-mode squeezed states, which impart correlations between modes that can imitate a random, ferromagnetic state or an antiferromagnetic state on demand. These results suggest that an electromechanical simulator could be built for the Ising Hamiltonian in a nontrivial configuration, namely, for a large number of spins with multiple degrees of coupling.

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Citations
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Journal ArticleDOI

A coherent Ising machine for 2000-node optimization problems.

TL;DR: It is shown that an optical processing approach based on a network of coupled optical pulses in a ring fiber can be used to model and optimize large-scale Ising systems, and a coherent Ising machine outperformed simulated annealing in terms of accuracy and computation time for a 2000-node complete graph.
Journal ArticleDOI

Intrinsic optimization using stochastic nanomagnets

TL;DR: In this article, the authors present a hardware system which can be engineered so that its intrinsic physics is described by the generalized Ising model and can encode the solution to many important NP-hard problems as its ground state.
Journal ArticleDOI

Large-Scale Photonic Ising Machine by Spatial Light Modulation.

TL;DR: In this article, a large-scale optical Ising machine with a spatial light modulator was designed and experimentally demonstrated, where the spin variables were encoded in a binary phase modulation of the field and the light propagation can be tailored to minimize an Ising Hamiltonian.
Journal ArticleDOI

Intrinsic optimization using stochastic nanomagnets

TL;DR: A hardware system which can be engineered so that its intrinsic physics is described by the generalized Ising model and can encode the solution to many important NP-hard problems as its ground state is drawn attention.
Book ChapterDOI

OIM: Oscillator-Based Ising Machines for Solving Combinatorial Optimisation Problems

TL;DR: In this paper, the phase dynamics of coupled self-sustaining nonlinear oscillators are shown to be governed by a Lyapunov function that is closely related to the Ising Hamiltonian of the coupling graph.
References
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Journal ArticleDOI

Network of Time-Multiplexed Optical Parametric Oscillators as a Coherent Ising Machine

TL;DR: In this article, a network of four degenerate optical parametric oscillators (OPOs) is employed to find the ground state of the Ising Hamiltonian, and a small non-deterministic polynomial time-hard problem is solved on a 4-OPO Ising machine.
Journal ArticleDOI

Nanoelectromechanical systems face the future

TL;DR: In the late 1950s, the late physicist Richard Feynman issued a public challenge by offering $1000 to the first person to create an electrical motor "smaller than 1/64th of an inch" as mentioned in this paper.
Journal ArticleDOI

Measurement-based control of a mechanical oscillator at its thermal decoherence rate

TL;DR: In this article, a position sensor is demonstrated that is capable of resolving the zero-point motion of a nanomechanical oscillator in the timescale of its thermal decoherence; it achieves an imprecise that is four orders of magnitude below that at the standard quantum limit.
Journal ArticleDOI

Bit storage and bit flip operations in an electromechanical oscillator.

TL;DR: An approach to mechanical logic based on nanoelectromechanical systems that is a variation on the Parametron architecture is proposed and, as a first step towards a possible nanomechanical computer, both bit storage and bit flip operations are demonstrated.
Journal ArticleDOI

Coherent Ising machine based on degenerate optical parametric oscillators

TL;DR: In this paper, a degenerate optical parametric oscillator network is proposed to solve the NP-hard problem of finding a ground state of the Ising model, which is based on the bistable output phase of each oscillator and the inherent preference of the network in selecting oscillation modes with the minimum photon decay rate.
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