Jang Hyunbum, Grimson Malcolm J, Hall Carol K
Department of Physiology, Johns Hopkins University, Baltimore, Maryland 21205, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Oct;68(4 Pt 2):046115. doi: 10.1103/PhysRevE.68.046115. Epub 2003 Oct 15.
Monte Carlo simulations have been performed to investigate the dependence of the dynamic phase behavior on the bilinear exchange anisotropy of a classical Heisenberg spin system. The system under consideration is a planar thin ferromagnetic film with competing surface fields subject to a pulsed oscillatory external field. The results show that the films exhibit a single discontinuous dynamic phase transition (DPT) as a function of the anisotropy of the bilinear exchange interaction in the Hamiltonian. Furthermore, there is no evidence of stochastic resonance associated with the DPT. These results are in marked contrast to the continuous DPT observed in the same system as a function of temperature and applied field strength for a fixed bilinear exchange anisotropy.
已进行蒙特卡罗模拟,以研究动态相行为对经典海森堡自旋系统双线性交换各向异性的依赖性。所考虑的系统是一个平面薄铁磁膜,具有竞争表面场,并受到脉冲振荡外场作用。结果表明,作为哈密顿量中双线性交换相互作用各向异性的函数,这些薄膜呈现出单一的不连续动态相变(DPT)。此外,没有证据表明与DPT相关的随机共振。这些结果与在相同系统中,对于固定的双线性交换各向异性,作为温度和外加场强函数所观察到的连续DPT形成显著对比。