Zhao Meng, Zhao Yifan, Li Yaojin, Dong Guohua, He Zhexi, Du Yujing, Jiang Yuxuan, Wu Shaoyuan, Wang Chenying, Zhao Libo, Jiang Zhuangde, Liu Ming, Zhou Ziyao
Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic Science and Engineering, State Key Laboratory for Manufacturing Systems Engineering, The International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technology, Xi'an Jiaotong University, Xi'an, 710049, China.
Jiangsu Key Laboratory of Phylogenomics & Comparative Genomics Jiangsu International Joint Center of Genomics, School of Life Sciences, Jiangsu Normal University, Xuzhou, Jiangsu, 221116, China.
Adv Mater. 2023 Oct;35(40):e2303810. doi: 10.1002/adma.202303810. Epub 2023 Aug 24.
Spin waves are considered to be an alternative carrier with great promise for information sensing. The feasible excitation and low-power manipulation of spin waves still remain a challenge. In this regard, natural light enablings spin-wave tunability in Co Al -alloyed film is investigated. A reversible shift of the critical angle (from 81° in the dark to 83° under illumination) of the body spin-wave is achieved successfully Meanwhile, an eye-catching shift (817 Oe) of the ferromagnetic resonance (FMR) field is obtained optically, leading to changes in magnetic anisotropy. Based on the modified Puszkarski's surface inhomogeneity model, the control of spin-wave resonance (SWR) by sunlight can be understood by an effective photoelectron-doping-induced change of the surface magnetic anisotropy. Furthermore, the body spin wave is modulated stably with natural light illumination, confirming a non-volatile, reversible switching behavior. This work has both practical and theoretical importance for developing future sunlight-tunable magnonics/spintronics devices.
自旋波被认为是一种极具信息传感潜力的替代载体。自旋波的可行激发和低功耗操控仍然是一个挑战。在这方面,研究了自然光实现钴铝合金薄膜中自旋波可调谐性的情况。成功实现了体自旋波临界角(从黑暗中的81°到光照下的83°)的可逆 shift。同时,通过光学方法获得了铁磁共振(FMR)场引人注目的 shift(817 Oe),导致磁各向异性发生变化。基于修正的普斯卡尔斯基表面不均匀性模型,太阳光对自旋波共振(SWR)的控制可以通过表面磁各向异性的有效光电子掺杂诱导变化来理解。此外,体自旋波在自然光照射下被稳定调制,证实了一种非易失性、可逆的切换行为。这项工作对于开发未来的太阳光可调谐磁子学/自旋电子学器件具有实际和理论重要性。