A three-modes Kuramoto network in a single nonlinear microelectromechanical device

This work presents a frequency multiplexed 3-limit cycles network in a multimode microelectromechanical nonlinear resonator. The network is composed of libration limit cycles and behaves in an analogous manner to a phase oscillator network. The libration limit cycles interact with each other through the stress tuning of the resonator and result in an all-to-all coupling that can be described by a Kuramoto model. Beyond the typically present cubic nonlinearity, the modes in question do not require any special frequency ratios. Thus, an interconnect free Kuramoto network is established within a single physical device without the need for electrical or optical coupling mechanisms between the individual elements.

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Publication Details

Journal
Applied Physics Letters
Published
2026-09-14
DOI
https://doi.org/10.1063/5.0350905
Primary Topic
Mechanical and Optical Resonators
Type
article
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article

A three-modes Kuramoto network in a single nonlinear microelectromechanical device

Samer Houri, Hajime Okamoto, Motoki Asano, Hiroshi Yamaguchi
Applied Physics Letters
Mechanical and Optical Resonators
article

A three-modes Kuramoto network in a single nonlinear microelectromechanical device

Samer Houri, Hajime Okamoto, Motoki Asano, Hiroshi Yamaguchi
article en

Abstract

This work presents a frequency multiplexed 3-limit cycles network in a multimode microelectromechanical nonlinear resonator. The network is composed of libration limit cycles and behaves in an analogous manner to a phase oscillator network. The libration limit cycles interact with each other through the stress tuning of the resonator and result in an all-to-all coupling that can be described by a Kuramoto model. Beyond the typically present cubic nonlinearity, the modes in question do not require any special frequency ratios. Thus, an interconnect free Kuramoto network is established within a single physical device without the need for electrical or optical coupling mechanisms between the individual elements.

Applied Physics LettersVol. 129(11)
NTT Basic Research Laboratories (JP)
Openalex Percentile: Top 13%
Mechanical and Optical Resonators
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A three-modes Kuramoto network in a single nonlinear microelectromechanical device — Samer Houri, Hajime Okamoto, et al. · Applied Physics Letters (2026) | TGRS Research Map | TGRS