Model of Magnetic Damping and Anisotropy at Elevated Temperatures: Application to Granular FePt Films

被引:28
作者
Strungaru, Mara [1 ]
Ruta, Sergiu [1 ]
Evans, Richard F. L. [1 ]
Chantrell, Roy W. [1 ]
机构
[1] Univ York, Dept Phys, York YO10 5DD, N Yorkshire, England
关键词
Grain boundaries - Iron alloys - Spin dynamics - Ferromagnetism - Magnetic anisotropy - Damping - Temperature distribution - Ferromagnetic materials - Platinum alloys - Binary alloys - Grain size and shape;
D O I
10.1103/PhysRevApplied.14.014077
中图分类号
O59 [应用物理学];
学科分类号
摘要
An understanding of the damping mechanism in finite-size systems and its dependence on temperature is a critical step in the development of magnetic nanotechnologies. In this work, nanosized materials are modeled via atomistic spin dynamics, the damping parameter being extracted from ferromagnetic resonance (FMR) simulations applied for FePt systems, generally used for heat-assisted magnetic recording media (HAMR). We find that the damping increases rapidly close to TC and the effect is enhanced with decreasing system size, which is ascribed to scattering at the grain boundaries. Additionally, FMR methods provide the temperature dependence of both damping and the anisotropy, which are important for the development of HAMR. Semianalytical calculations show that, in the presence of a grain-size distribution, the FMR line width can decrease close to the Curie temperature due to a loss of inhomogeneous line broadening. Although FePt has been used in this study, the results presented in the current work are general and valid for any ferromagnetic material.
引用
收藏
页数:9
相关论文
共 28 条
[1]   Magnetic anisotropy of FePt: Effect of lattice distortion and chemical disorder [J].
Aas, C. J. ;
Szunyogh, L. ;
Chen, J. S. ;
Chantrell, R. W. .
APPLIED PHYSICS LETTERS, 2011, 99 (13)
[2]   Optimal electron, phonon, and magnetic characteristics for low energy thermally induced magnetization switching [J].
Atxitia, U. ;
Ostler, T. A. ;
Chantrell, R. W. ;
Chubykalo-Fesenko, O. .
APPLIED PHYSICS LETTERS, 2015, 107 (19)
[3]   Laser induced spin precession in highly anisotropic granular L10 FePt [J].
Becker, J. ;
Mosendz, O. ;
Weller, D. ;
Kirilyuk, A. ;
Maan, J. C. ;
Christianen, P. C. M. ;
Rasing, Th ;
Kimel, A. .
APPLIED PHYSICS LETTERS, 2014, 104 (15)
[4]   Dynamic approach for micromagnetics close to the Curie temperature [J].
Chubykalo-Fesenko, O. ;
Nowak, U. ;
Chantrell, R. W. ;
Garanin, D. .
PHYSICAL REVIEW B, 2006, 74 (09)
[5]   The Landau-Lifshitz equation in atomistic models [J].
Ellis, M. O. A. ;
Evans, R. F. L. ;
Ostler, T. A. ;
Barker, J. ;
Atxitia, U. ;
Chubykalo-Fesenko, O. ;
Chantrell, R. W. .
LOW TEMPERATURE PHYSICS, 2015, 41 (09) :705-712
[6]   Classical spin model of the relaxation dynamics of rare-earth doped permalloy [J].
Ellis, M. O. A. ;
Ostler, T. A. ;
Chantrell, R. W. .
PHYSICAL REVIEW B, 2012, 86 (17)
[7]   Atomistic spin model simulations of magnetic nanomaterials [J].
Evans, R. F. L. ;
Fan, W. J. ;
Chureemart, P. ;
Ostler, T. A. ;
Ellis, M. O. A. ;
Chantrell, R. W. .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2014, 26 (10)
[8]   Fokker-Planck and Landau-Lifshitz-Bloch equations for classical ferromagnets [J].
Garanin, DA .
PHYSICAL REVIEW B, 1997, 55 (05) :3050-3057
[9]   The Curie temperature distribution of FePt granular magnetic recording media [J].
Hovorka, O. ;
Devos, S. ;
Coopman, Q. ;
Fan, W. J. ;
Aas, C. J. ;
Evans, R. F. L. ;
Chen, Xi ;
Ju, G. ;
Chantrell, R. W. .
APPLIED PHYSICS LETTERS, 2012, 101 (05)
[10]   Microstructure Control of L10 Ordered FePt Granular Film for HAMR Application [J].
Hu, J. F. ;
Zhou, T. J. ;
Phyoe, W. L. ;
Cher, Kelvin ;
Shi, J. Z. .
IEEE TRANSACTIONS ON MAGNETICS, 2013, 49 (07) :3737-3740