Spin flip statistics and Spin wave interference patterns in Ising ferromagnetic films: A Monte Carlo study
arXiv:1410.7023 · doi:10.1016/j.heliyon.2017.e00357
Abstract
The spin wave interference is studied in two dimensional Ising ferromagnet driven by two coherent spherical magnetic field waves by Monte Carlo simulation. The spin waves are found to propagate and interfere according to the classic rule of interference pattern generated by two point sources. The interference pattern of spin wave is observed in one boundary of the lattice. The interference pattern is detected and studied by spin flip statistics at high and low temperatures. The destructive interference is manifested as the large number of spin flips and vice versa.
7 pages Latex, 2 captioned eps figures
References in corpus (6)
- Realization of XNOR and NAND spin-wave logic gates
- Spin wave dynamics and the determination of intrinsic Gilbert damping in locally-excited Permalloy thin films
- Interference-mediated intensity modulation of spin waves
- Dynamic-Symmetry-Breaking Breathing and Spreading Transitions in Ferromagnetic Film Irradiated by Spherical Electromagnetic Wave
- Polarised Electromagnetic wave propagation through the ferromagnet: Phase boundary of dynamic phase transition
- Random field Ising model swept by propagating magnetic field wave: Athermal nonequilibrium phase diagram