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Electric-field control of spin dynamics during magnetic phase transitions
- Nan, Tianxiang;
- Lee, Yeonbae;
- Zhuang, Shihao;
- Hu, Zhongqiang;
- Clarkson, JD (Clarkson, James ;
- ... Ko, Changhyun);
- 외 9명
WEB OF SCIENCE
31SCOPUS
31초록
Controlling magnetization dynamics is imperative for developing ultrafast spintronics and tunable microwave devices. However, the previous research has demonstrated limited electric-field modulation of the effective magnetic damping, a parameter that governs the magnetization dynamics. Here, we propose an approach to manipulate the damping by using the large damping enhancement induced by the two-magnon scattering and a nonlocal spin relaxation process in which spin currents are resonantly transported from antiferromagnetic domains to ferromagnetic matrix in a mixed-phased metallic alloy FeRh. This damping enhancement in FeRh is sensitive to its fraction of antiferromagnetic and ferromagnetic phases, which can be dynamically tuned by electric fields through a strain-mediated magnetoelectric coupling. In a heterostructure of FeRh and piezoelectric PMN-PT, we demonstrated a more than 120% modulation of the effective damping by electric fields during the antiferromagnetic-to-ferromagnetic phase transition. Our results demonstrate an efficient approach to controlling the magnetization dynamics, thus enabling low-power tunable electronics.
- 제목
- Electric-field control of spin dynamics during magnetic phase transitions
- 저자
- Nan, Tianxiang; Lee, Yeonbae; Zhuang, Shihao; Hu, Zhongqiang; Clarkson, JD (Clarkson, James ; Wang, Xinjun; Ko, Changhyun); Choe, HwanSung; Chen, Zuhuang; Budil, David; Wu, Junqiao; Salahuddin, Say; Hu, Jiamian; Ramesh, Ramamoorthy; Sun, Nian
- 발행일
- 2020-10
- 저널명
- Science Advances
- 권
- 6
- 호
- 40
- 페이지
- 1 ~ 6
- 언어
- ENG
- 출판사
- AMER ASSOC ADVANCEMENT SCIENCE
- 발행국가
- 미국
- 분량
- 6 페이지
- ISSN
- E 2375-2548
P 2375-2548