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Low Power Coherent Ising Machine Based on Mechanical Kerr Nonlinearity
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Title
Low Power Coherent Ising Machine Based on Mechanical Kerr Nonlinearity
Issued Date
2023-02
Citation
Rah, Yoonhyuk. (2023-02). Low Power Coherent Ising Machine Based on Mechanical Kerr Nonlinearity. Physical Review Letters, 130(7). doi: 10.1103/PhysRevLett.130.073802
Type
Article
Keywords
OPTIMIZATIONNETWORK
ISSN
0031-9007
Abstract
Finding a reliable Ising machine for solving nondeterministic polynomial-class problems has attracted great attention in recent years, where an authentic system can be expanded with polynomial-scaled resources to find the ground state Ising Hamiltonian. In this Letter, we propose an extremely low power optomechanical coherent Ising machine based on a new enhanced symmetry breaking mechanism and highly nonlinear mechanical Kerr effect. The mechanical movement of an optomechanical actuator induced by the optical gradient force greatly increases the nonlinearity by a few orders and significantly reduces the power threshold using conventional structures capable of fabrication via photonic integrated circuit platforms. With the simple but strong bifurcation mechanism and remarkably low power requirement, our optomechanical spin model opens a path for chip-scale integration of large-size Ising machine implementations with great stability. © 2023 American Physical Society.
URI
http://hdl.handle.net/20.500.11750/46091
DOI
10.1103/PhysRevLett.130.073802
Publisher
American Physical Society
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한상윤
Han, Sangyoon한상윤

Department of Robotics and Mechatronics Engineering

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