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Main Authors: Zhang, Zhizhi, Lai, Yuanming, Liu, Qian, Liu, Xiongzhang, Wu, Chongsheng, Yan, Peng
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2502.14339
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_version_ 1866918063728754688
author Zhang, Zhizhi
Lai, Yuanming
Liu, Qian
Liu, Xiongzhang
Wu, Chongsheng
Yan, Peng
author_facet Zhang, Zhizhi
Lai, Yuanming
Liu, Qian
Liu, Xiongzhang
Wu, Chongsheng
Yan, Peng
contents It is conventional wisdom that the spectra of the impedances of magnetostatic waves (MSWs) determine the transmissions of MSW devices. In this work, we show that the characteristics of propagating MSWs have critical impacts on the characteristics of transmissions. A wave-propagation based analysis considering the inhomogeneous distributions of magnetic fields is presented for investigating the propagations of MSWs. Based on the analysis, it is demonstrated that the metallic nature of transducers causes the high insertion losses in high-frequency bands, while the dips and severe in-band ripples in low-frequency bands are resulted from the complicated interference between the multiple width modes. Simulations in HFSS verify the analysis with good agreements. Our work advances the understanding of MSWs propagating in ferrite films with metallic structures and paves the way to designing MSW devices aimed at implantation in microwave systems.
format Preprint
id arxiv_https___arxiv_org_abs_2502_14339
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Wave-propagation Based Analysis of the Magnetostatic Waves in Ferrite Films Excited by Metallic Transducers
Zhang, Zhizhi
Lai, Yuanming
Liu, Qian
Liu, Xiongzhang
Wu, Chongsheng
Yan, Peng
Applied Physics
It is conventional wisdom that the spectra of the impedances of magnetostatic waves (MSWs) determine the transmissions of MSW devices. In this work, we show that the characteristics of propagating MSWs have critical impacts on the characteristics of transmissions. A wave-propagation based analysis considering the inhomogeneous distributions of magnetic fields is presented for investigating the propagations of MSWs. Based on the analysis, it is demonstrated that the metallic nature of transducers causes the high insertion losses in high-frequency bands, while the dips and severe in-band ripples in low-frequency bands are resulted from the complicated interference between the multiple width modes. Simulations in HFSS verify the analysis with good agreements. Our work advances the understanding of MSWs propagating in ferrite films with metallic structures and paves the way to designing MSW devices aimed at implantation in microwave systems.
title Wave-propagation Based Analysis of the Magnetostatic Waves in Ferrite Films Excited by Metallic Transducers
topic Applied Physics
url https://arxiv.org/abs/2502.14339