Role of magnetic anisotropy in the ultrafast magnetization dynamics of Gd-Fe thin films of different thicknesses

被引:13
|
作者
Mondal, Sucheta [1 ]
Talapatra, Abhishek [2 ]
Chelvane, J. Arout [3 ]
Mohanty, Jyoti Ranjan [2 ]
Barman, Anjan [1 ]
机构
[1] SN Bose Natl Ctr Basic Sci, Dept Condensed Matter Phys & Mat Sci, Block JD,Sect 3, Kolkata 700106, India
[2] Indian Inst Technol Hyderabad, Nanomagnetism & Microscopy Lab, Dept Phys, Sangareddy 502285, Telangana, India
[3] Def Met Res Lab, Hyderabad 500058, India
关键词
REVERSAL; MICROSTRUCTURE;
D O I
10.1103/PhysRevB.100.054436
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The time-resolved magneto-optical Kerr effect technique has been exploited to study the magnetization dynamics over femtosecond to nanosecond timescale for Gd-Fe thin films with different thicknesses. The precessional magnetization dynamics is studied by varying the magnitude and orientation of the bias magnetic field from nearly in-plane to nearly out-of-plane (OOP) direction. The analysis of bias magnetic field dependence of precessional frequency has revealed the development of OOP anisotropy when the film thickness was increased from 20 to 100 nm and this is in good agreement with the static magnetic properties of the films. Moreover, the 100-nm-thick film has shown a signature of perpendicular standing spin wave modes along with the uniform Kittel mode. The evolution of their frequency, decay time, and damping with the magnitude and orientation of bias magnetic field is analyzed in detail, showing possible energy transfer between the perpendicular standing spin wave modes and the uniform Kittel mode. Interestingly, the effective damping could be tuned over a broader range of 0.02 to 0.15, which shows the potential for applications in miniaturized and fast magnetic storage, magnetic memory, and magnonic devices.
引用
收藏
页数:10
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