Javascript must be enabled to continue!
Microwave Photonic Ising Machine
View through CrossRef
Abstract
Ising machines based on analog systems have the potential of acceleration in solving ubiquitous combinatorial optimization problems. Although some artificial spins to support large-scale Ising machine is reported, e.g. superconducting qubits in quantum annealers and short optical pulses in coherent Ising machines, the spin coherence is fragile due to the ultra-low equivalent temperature or optical phase sensitivity. In this paper, we propose to use short microwave pulses generated from an optoelectronic parametric oscillator as the spins to implement the Ising machine with large scale and also high coherence under room temperature. The proposed machine supports 10,000 spins, and the high coherence leads to accurate computation. Moreover, the Ising machine is highly compatible with high-speed electronic devices for programmability, paving a low-cost, accurate, and easy-to-implement way toward to solve real-world optimization problems.
Research Square Platform LLC
Title: Microwave Photonic Ising Machine
Description:
Abstract
Ising machines based on analog systems have the potential of acceleration in solving ubiquitous combinatorial optimization problems.
Although some artificial spins to support large-scale Ising machine is reported, e.
g.
superconducting qubits in quantum annealers and short optical pulses in coherent Ising machines, the spin coherence is fragile due to the ultra-low equivalent temperature or optical phase sensitivity.
In this paper, we propose to use short microwave pulses generated from an optoelectronic parametric oscillator as the spins to implement the Ising machine with large scale and also high coherence under room temperature.
The proposed machine supports 10,000 spins, and the high coherence leads to accurate computation.
Moreover, the Ising machine is highly compatible with high-speed electronic devices for programmability, paving a low-cost, accurate, and easy-to-implement way toward to solve real-world optimization problems.
Related Results
Two-dimensional function photonic crystal
Two-dimensional function photonic crystal
Photonic crystal is a kind of periodic optical nanostructure consisting of two or more materials with different dielectric constants, which has attracted great deal of attention be...
Ordering in two-dimensional Ising models with competing interactions
Ordering in two-dimensional Ising models with competing interactions
We study the 2D Ising model on a square lattice with additional non-equal diagonal next-nearest neighbor interactions. The cases of classical and quantum (transverse) models are co...
Analysis of photonic crystal transmission properties by the precise integration time domain
Analysis of photonic crystal transmission properties by the precise integration time domain
Photonic crystals are materials patterned with a periodicity in the dielectric constant, which can create a range of forbidden frequencies called as a photonic band gap. The photon...
A Comparative Study of Microwave Welding Using Multiwalled Carbon Nanotubes and Silicon Carbide Nanowhiskers as Microwave Susceptors
A Comparative Study of Microwave Welding Using Multiwalled Carbon Nanotubes and Silicon Carbide Nanowhiskers as Microwave Susceptors
Recently, microwave welding has arisen as an advanced joining method due to its versatility and rapid heating capabilities. Among others, microwave susceptors play a crucial role i...
Assessing the Impact of Microwave Treatment on Soil Microbial Populations
Assessing the Impact of Microwave Treatment on Soil Microbial Populations
Microwave soil treatment can kill weed plants and their seeds in the soil. It has also been demonstrated elsewhere that microwave soil treatment can kill nematodes in the soil; how...
Photonic microwave waveform generation based on polarization delay interference
Photonic microwave waveform generation based on polarization delay interference
Techniques for generating microwave waveform such as square or triangle waveform have been a topic of general interest recently. Because they are important for applications in rada...
Perceval: A Software Platform for Discrete Variable Photonic Quantum Computing
Perceval: A Software Platform for Discrete Variable Photonic Quantum Computing
We introducePerceval, an open-source software platform for simulating and interfacing with discrete-variable photonic quantum computers, and describe its main features and componen...
Machine Learning of the Two-Dimensional Diluted Bond Ising Model
Machine Learning of the Two-Dimensional Diluted Bond Ising Model
The bond-diluted 2D Ising model is essential for understanding the effects of disorder on magnetic systems. Although the T-p phase diagram of this model has been developed through ...

