Effects of boundary conditions on magnetization switching in kinetic Ising models of nanoscale ferromagnets

被引:43
作者
Richards, HL
Kolesik, M
Lindgard, PA
Rikvold, PA
Novotny, MA
机构
[1] SAS, INST PHYS, BRATISLAVA 84228, SLOVAKIA
[2] UNIV TOKYO, DEPT PHYS, BUNKYO KU, TOKYO 113, JAPAN
[3] RISO NATL LAB, DEPT SOLID STATE PHYS, DK-4000 ROSKILDE, DENMARK
[4] FLORIDA STATE UNIV, DEPT PHYS, CTR MAT RES & TECHNOL, TALLAHASSEE, FL 32306 USA
[5] FLORIDA STATE UNIV, SUPERCOMP COMPUTAT RES INST, TALLAHASSEE, FL 32306 USA
[6] KYOTO UNIV, FAC INTEGRATED HUMAN STUDIES, DEPT FUNDAMENTAL SCI, KYOTO 60601, JAPAN
[7] FLORIDA A&M UNIV, DEPT ELECT ENGN, TALLAHASSEE, FL 32310 USA
关键词
D O I
10.1103/PhysRevB.55.11521
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Magnetization switching in highly anisotropic single-domain ferromagnets has been previously shown to be qualitatively described by the droplet theory of metastable decay and simulations of two-dimensional kinetic Ising systems with periodic boundary conditions. In this paper we consider the effects of boundary conditions od the switching phenomena. A rich range of behaviors is predicted by droplet theory: the specific mechanism by which switching occurs depends on the structure of the boundary, the particle size, the temperature, and the strength of the: applied field. The theory predicts the existence of a peak in the switching field as a function of system size in both systems with periodic boundary conditions and in systems with boundaries. The size of the peak is strongly dependent on the boundary effects. It is generally reduced by open boundary conditions, and in some cases it disappears if the boundaries are too favorable towards nucleation. However, we also demonstrate conditions under which the peak remains discernible. This peak arises as a purely dynamic effect and is not related to the possible existence of multiple domains. We illustrate the predictions of droplet theory by Monte Carlo simulations of two-dimensional Ising systems with various system shapes and boundary conditions.
引用
收藏
页码:11521 / 11540
页数:20
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