Effect of Bi/In co-doing on the Gilbert damping and Faraday rotation of Tm3Fe5O12 film
Abstract
Rare-earth iron garnet materials are applied extensively in magnetic devices and magneto-optical isolators owing to their superior properties. This Letter presents a detailed investigation of the Gilbert damping and Faraday rotation of Bi/In-doped Tm3Fe5O12 (Bi/In:TmIG) films on SGGG (111) substrates. An increase in indium doping concentration caused the saturation magnetization to rise, and the coercive force decreased along the in-plane magnetization direction. This was accompanied by concurrent variations in the Faraday rotation angle and temperature coefficient. The Gilbert damping factor and ferromagnetic resonance linewidth of the BiTmIn0.5IG sample dropped to 7.51 × 10−3 and 16 Oe at 3 GHz, respectively. In3+ doping affects the crystal structure and magnetic properties of Bi-doped TmIG, in addition to the coupling interactions between Fe3+ ions at the a- and d-sites, respectively. The low damping factor with narrow resonance linewidth has promising potential for the further application of TmIG in magnetron devices and magneto-optical devices.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (12)
Zhichao Xing
Division of Thyroid Surgery, Department of General Surgery and Laboratory of Thyroid and Parathyroid Disease, Frontiers Science Center for Disease-related Molecular Network, West China Hospital, Sichuan University
Hanxu Zhang
School of Physics, Harbin Institute of Technology 1 , Harbin 150001,
Senyin Zhu
School of Physics, Harbin Institute of Technology 1 , Harbin 150001,
Yizhi Xu
Division of Physical Chemistry
Jin Zhan
School of Physics, Harbin Institute of Technology 1 , Harbin 150001,
Lingling Tao
Yu Sui
Qiang Fu
Guozhi Chai
Shiheng Liang
Xianjie Wang
Bo Song