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Tunable Damping in Magnetic Nanowires Induced by Chiral Pumping of Spin Waves

  • Hanchen Wang
  • , Marco Madami*
  • , Jilei Chen
  • , Lutong Sheng
  • , Mingkun Zhao
  • , Yu Zhang
  • , Wenqing He
  • , Chenyang Guo
  • , Hao Jia
  • , Song Liu
  • , Qiuming Song
  • , Xiufeng Han
  • , Dapeng Yu
  • , Gianluca Gubbiotti*
  • , Haiming Yu*
  • *此作品的通讯作者
  • Beihang University
  • University of Perugia
  • Southern University of Science and Technology
  • CAS - Institute of Physics
  • National Research Council of Italy

科研成果: 期刊稿件文章同行评审

摘要

Spin-current and spin-wave-based devices have been considered as promising candidates for next-generation information transport and processing and wave-based computing technologies with low-power consumption. Spin pumping has attracted tremendous attention and has led to interesting phenomena, including the line width broadening, which indicates damping enhancement due to energy dissipation. Recently, chiral spin pumping of spin waves has been experimentally realized and theoretically studied in magnetic nanostructures. Here, we experimentally observe by Brillouin light scattering (BLS) microscopy the line width broadening sensitive to magnetization configuration in a hybrid metal-insulator nanostructure consisting of a Co nanowire grating dipolarly coupled to a planar continuous YIG film, consistent with the results of the measured hysteresis loop. Tunable line width broadening has been confirmed independently by propagating spin-wave spectroscopy, where unidirectional spin waves are detected. Position-dependent BLS measurement unravels an oscillating-like behavior of magnon populations in Co nanowire grating, which might result from the magnon trap effect. These results are thus attractive for reconfigurable nanomagnonics devices.

源语言英语
页(从-至)9076-9083
页数8
期刊ACS Nano
15
5
DOI
出版状态已出版 - 25 5月 2021

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