Dynamic Control of Coupling Regimes in Oscillator Systems via Tunable Open Channels

Fuente: arXiv
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Main Authors: Wang, Jiongjie, Xiao, Jiang
Format: Preprint
Published: 2024
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author Wang, Jiongjie
Xiao, Jiang
author_facet Wang, Jiongjie
Xiao, Jiang
contents We explore a system comprising two oscillators that are coupled to an open channel at distinct locations. The coupling nature can be adjusted to be coherent, dissipative, or a combination of both, controlled by a tunable phase resulting from wave propagation between the oscillators. This setup allows us to observe characteristic energy level behaviors: level repulsion occurs with coherent coupling, while level attraction is observed with dissipative coupling. In the regime of dissipative coupling, one of the eigenmodes becomes a dark mode, rendering it immune to external perturbations. By leveraging the tunable coupling through the open channel, we introduce a novel method for manipulating this dark mode, achieving both efficient excitation and an extended lifetime. Our results have broad applicability across various physical systems, including optical, acoustic, and magnetic configurations, underscoring the potential for innovative applications in mode storage and signal processing.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12217
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamic Control of Coupling Regimes in Oscillator Systems via Tunable Open Channels
Wang, Jiongjie
Xiao, Jiang
Mesoscale and Nanoscale Physics
We explore a system comprising two oscillators that are coupled to an open channel at distinct locations. The coupling nature can be adjusted to be coherent, dissipative, or a combination of both, controlled by a tunable phase resulting from wave propagation between the oscillators. This setup allows us to observe characteristic energy level behaviors: level repulsion occurs with coherent coupling, while level attraction is observed with dissipative coupling. In the regime of dissipative coupling, one of the eigenmodes becomes a dark mode, rendering it immune to external perturbations. By leveraging the tunable coupling through the open channel, we introduce a novel method for manipulating this dark mode, achieving both efficient excitation and an extended lifetime. Our results have broad applicability across various physical systems, including optical, acoustic, and magnetic configurations, underscoring the potential for innovative applications in mode storage and signal processing.
title Dynamic Control of Coupling Regimes in Oscillator Systems via Tunable Open Channels
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2411.12217