Torrez Herrera J J, Ranzuglia G A, Manzi S J, Pereyra V D
Departamento de Física, Instituto de Física Aplicada (INFAP)-CONICET, Universidad Nacional de San Luis, Chacabuco 917, 5700 San Luis, Argentina.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052101. doi: 10.1103/PhysRevE.87.052101. Epub 2013 May 2.
This paper analyzes the effect of particle-hole symmetry on the behavior of the tracer diffusion coefficient as well as the jump diffusion coefficient. The coefficients are obtained by performing a random walk of individual atoms in a two-dimensional square lattice at monolayer, using the n-fold way Monte Carlo simulation. Different hopping mechanisms have been introduced to study the effect of particle-hole symmetry. For hopping kinetics where the initial-state interactions are involved, the diffusion coefficient at high coverage falls several orders of magnitude due to the effect of particle-hole symmetry. For hopping kinetics where the final-state interactions are present, the effect is the opposite. For those involving both initial- and final-state interactions, like the so-called interaction kinetics, the effect of particle-hole symmetry is also discussed. This effect seems to be critical for repulsive lateral interactions, for which the behavior of the diffusion coefficients is modified by introducing the particle-hole symmetry condition.
本文分析了粒子-空穴对称性对示踪扩散系数以及跳跃扩散系数行为的影响。这些系数是通过在二维正方晶格单层中对单个原子进行随机游走,并使用n重方式蒙特卡罗模拟得到的。引入了不同的跳跃机制来研究粒子-空穴对称性的影响。对于涉及初始态相互作用的跳跃动力学,由于粒子-空穴对称性的影响,高覆盖率下的扩散系数下降了几个数量级。对于存在终态相互作用的跳跃动力学,效果则相反。对于那些涉及初始态和终态相互作用的情况,如所谓的相互作用动力学,也讨论了粒子-空穴对称性的影响。这种影响对于排斥性横向相互作用似乎至关重要,通过引入粒子-空穴对称性条件,扩散系数的行为会发生改变。