Deterministic Electrical Control of Single Magnetic Bubbles in Nanostructured Cells

Fuente: arXiv
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Autori principali: Jiang, Jialiang, Wu, Yaodong, Kong, Lingyao, Zhang, Yongsen, Qiu, Sheng, Zhang, Huanhuan, Wang, Yihao, Li, Junbo, Xiong, Yimin, Wang, Shouguo, Tian, Mingliang, Du, Haifeng, Tang, Jin
Natura: Preprint
Pubblicazione: 2025
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author Jiang, Jialiang
Wu, Yaodong
Kong, Lingyao
Zhang, Yongsen
Qiu, Sheng
Zhang, Huanhuan
Wang, Yihao
Li, Junbo
Xiong, Yimin
Wang, Shouguo
Tian, Mingliang
Du, Haifeng
Tang, Jin
author_facet Jiang, Jialiang
Wu, Yaodong
Kong, Lingyao
Zhang, Yongsen
Qiu, Sheng
Zhang, Huanhuan
Wang, Yihao
Li, Junbo
Xiong, Yimin
Wang, Shouguo
Tian, Mingliang
Du, Haifeng
Tang, Jin
contents Localized particle-like spin textures have been found to exhibit emergent electromagnetic properties, which hold promise for the development of intriguing spintronic devices. Among these textures, magnetic bubbles represent localized spin configurations that could serve as data bits. However, the precise methods for their electrical manipulation remain uncertain. Here, we demonstrate the deterministic electrical manipulations and detections of single magnetic bubbles in kagome-latticed Fe3Sn2 magnetic nanostructured cells. The current-induced dynamics of magnetic bubbles were explored using nanosecond pulsed currents. We show single pulsed currents with low and high densities can be applied for the creation and deletion of a single bubble, respectively. The mutual writing-deleting operations on single bubbles are attributed to the thermal heating and non-thermal spin-transfer torque effects in combination with micromagnetic simulations. We also realized the in-situ detection of a single bubble using the anisotropic magnetoresistance effect through a standard four-probe method. Our results could propel the development of bubble-based spintronic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2512_10242
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Deterministic Electrical Control of Single Magnetic Bubbles in Nanostructured Cells
Jiang, Jialiang
Wu, Yaodong
Kong, Lingyao
Zhang, Yongsen
Qiu, Sheng
Zhang, Huanhuan
Wang, Yihao
Li, Junbo
Xiong, Yimin
Wang, Shouguo
Tian, Mingliang
Du, Haifeng
Tang, Jin
Mesoscale and Nanoscale Physics
Materials Science
Localized particle-like spin textures have been found to exhibit emergent electromagnetic properties, which hold promise for the development of intriguing spintronic devices. Among these textures, magnetic bubbles represent localized spin configurations that could serve as data bits. However, the precise methods for their electrical manipulation remain uncertain. Here, we demonstrate the deterministic electrical manipulations and detections of single magnetic bubbles in kagome-latticed Fe3Sn2 magnetic nanostructured cells. The current-induced dynamics of magnetic bubbles were explored using nanosecond pulsed currents. We show single pulsed currents with low and high densities can be applied for the creation and deletion of a single bubble, respectively. The mutual writing-deleting operations on single bubbles are attributed to the thermal heating and non-thermal spin-transfer torque effects in combination with micromagnetic simulations. We also realized the in-situ detection of a single bubble using the anisotropic magnetoresistance effect through a standard four-probe method. Our results could propel the development of bubble-based spintronic devices.
title Deterministic Electrical Control of Single Magnetic Bubbles in Nanostructured Cells
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2512.10242