Unveiling Magnon-Magnon Coupling and Its Dynamic Control in Nanomagnets

Fuente: arXiv
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Auteurs principaux: Kashid, Siddhesh Sharad, Verma, Sachin, Maurya, Abhishek, Maity, Manjushree, Shrivastava, Kuldeep Kumar, Singh, Rajeev, Bhoi, Biswanath
Format: Preprint
Publié: 2024
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author Kashid, Siddhesh Sharad
Verma, Sachin
Maurya, Abhishek
Maity, Manjushree
Shrivastava, Kuldeep Kumar
Singh, Rajeev
Bhoi, Biswanath
author_facet Kashid, Siddhesh Sharad
Verma, Sachin
Maurya, Abhishek
Maity, Manjushree
Shrivastava, Kuldeep Kumar
Singh, Rajeev
Bhoi, Biswanath
contents Hybrid magnonics, exploring the coupling between magnons and quantum systems, is an exciting field for developing next-generation information technologies. Achieving a strong and tunable magnon-magnon coupling (MMC) in confined nanomagnets is crucial for the on-chip integration of these hybrid systems and advancing the field. In this work, we numerically investigate the interactions between different magnon modes excited within an elliptical magnonic nano-disc (EMND), demonstrating an anti-crossing effect in the dispersion spectra. A comprehensive theoretical framework was presented that explains this anti-crossing phenomenon as a result of MMC and provide estimates for the strength of the coupling (g). Furthermore, we show that this intermodal coupling can be tuned from a strong coupling regime (g = 300 MHz) to a weak coupling regime by varying the direction of the external magnetic field and the intrinsic properties of the EMND. Our combined numerical and theoretical findings offer new insights into MMC, significantly advancing the field of quantum magnonics and magnon-based quantum information technology.
format Preprint
id arxiv_https___arxiv_org_abs_2412_11181
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Unveiling Magnon-Magnon Coupling and Its Dynamic Control in Nanomagnets
Kashid, Siddhesh Sharad
Verma, Sachin
Maurya, Abhishek
Maity, Manjushree
Shrivastava, Kuldeep Kumar
Singh, Rajeev
Bhoi, Biswanath
Mesoscale and Nanoscale Physics
Applied Physics
Quantum Physics
Hybrid magnonics, exploring the coupling between magnons and quantum systems, is an exciting field for developing next-generation information technologies. Achieving a strong and tunable magnon-magnon coupling (MMC) in confined nanomagnets is crucial for the on-chip integration of these hybrid systems and advancing the field. In this work, we numerically investigate the interactions between different magnon modes excited within an elliptical magnonic nano-disc (EMND), demonstrating an anti-crossing effect in the dispersion spectra. A comprehensive theoretical framework was presented that explains this anti-crossing phenomenon as a result of MMC and provide estimates for the strength of the coupling (g). Furthermore, we show that this intermodal coupling can be tuned from a strong coupling regime (g = 300 MHz) to a weak coupling regime by varying the direction of the external magnetic field and the intrinsic properties of the EMND. Our combined numerical and theoretical findings offer new insights into MMC, significantly advancing the field of quantum magnonics and magnon-based quantum information technology.
title Unveiling Magnon-Magnon Coupling and Its Dynamic Control in Nanomagnets
topic Mesoscale and Nanoscale Physics
Applied Physics
Quantum Physics
url https://arxiv.org/abs/2412.11181