Nonreciprocal Bistability in Coupled Nonlinear Cavity Magnonics

Fuente: arXiv
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Main Authors: Xiong, Wei, Gong, Yuan, Li, Zhuanxia, Wu, Ying-Xia, Cheng, Yan-Xue, Chen, Jiaojiao
Format: Preprint
Published: 2023
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author Xiong, Wei
Gong, Yuan
Li, Zhuanxia
Wu, Ying-Xia
Cheng, Yan-Xue
Chen, Jiaojiao
author_facet Xiong, Wei
Gong, Yuan
Li, Zhuanxia
Wu, Ying-Xia
Cheng, Yan-Xue
Chen, Jiaojiao
contents We propose a coupled nonlinear cavity-magnon system, consisting of two cavities, a second-order nonlinear element, and a yttrium-iron-garnet (YIG) sphere that supports Kerr magnons, to realize the sought-after highly tunable nonreciprocity. We first derive the critical condition for switching between reciprocity and nonreciprocity in the absence of magnon driving, and then numerically demonstrate that strong magnonic nonreciprocity can be achieved by violating this critical condition. When magnons are driven, we show that strong magnonic nonreciprocity can also be attained even within the critical condition. Compared to previous studies, the introduced nonlinear element not only relaxes the critical condition in both the weak and strong coupling regimes, but also offers an alternative means to tune magnonic nonreciprocity. Our work provides a promising avenue for realizing highly tunable nonreciprocal devices based on Kerr magnons.
format Preprint
id arxiv_https___arxiv_org_abs_2309_09245
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Nonreciprocal Bistability in Coupled Nonlinear Cavity Magnonics
Xiong, Wei
Gong, Yuan
Li, Zhuanxia
Wu, Ying-Xia
Cheng, Yan-Xue
Chen, Jiaojiao
Quantum Physics
Mesoscale and Nanoscale Physics
We propose a coupled nonlinear cavity-magnon system, consisting of two cavities, a second-order nonlinear element, and a yttrium-iron-garnet (YIG) sphere that supports Kerr magnons, to realize the sought-after highly tunable nonreciprocity. We first derive the critical condition for switching between reciprocity and nonreciprocity in the absence of magnon driving, and then numerically demonstrate that strong magnonic nonreciprocity can be achieved by violating this critical condition. When magnons are driven, we show that strong magnonic nonreciprocity can also be attained even within the critical condition. Compared to previous studies, the introduced nonlinear element not only relaxes the critical condition in both the weak and strong coupling regimes, but also offers an alternative means to tune magnonic nonreciprocity. Our work provides a promising avenue for realizing highly tunable nonreciprocal devices based on Kerr magnons.
title Nonreciprocal Bistability in Coupled Nonlinear Cavity Magnonics
topic Quantum Physics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2309.09245