Tierno Pietro, Johansen Tom H, Sancho J M
Departament de Estructura i Constituents de la Matèria, Universitat de Barcelona, 08028 Barcelona, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jun;87(6):062301. doi: 10.1103/PhysRevE.87.062301. Epub 2013 Jun 3.
Dynamic hysteresis phenomena are widespread in physical sciences and describe the complex behavior of systems driven out of equilibrium by a periodic forcing. We use here paramagnetic colloids above a stripe-patterned garnet film as the model system to study dynamic hysteresis, the latter induced when the particles are periodically translated by an oscillating magnetic field. In contrast to the expected behavior for a bistable system, we observe that the area of the hysteresis loop decreases by increasing the driving frequency and reduces to zero for frequencies higher than 5-7s(-1). To explain the experimental results, we develop a simple model based on an overdamped Brownian particle driven by a periodic potential with an oscillating amplitude.
动态滞后现象在物理科学中广泛存在,描述了由周期性外力驱动而偏离平衡态的系统的复杂行为。我们在此使用条纹图案石榴石薄膜上方的顺磁胶体作为模型系统来研究动态滞后现象,当粒子被振荡磁场周期性平移时会引发后者。与双稳态系统的预期行为相反,我们观察到滞后回线的面积会随着驱动频率的增加而减小,并且在高于5 - 7秒⁻¹的频率下会减小到零。为了解释实验结果,我们基于一个由具有振荡幅度的周期性势驱动的过阻尼布朗粒子开发了一个简单模型。