Laboratory of Quantum Information Technology, ICMP and SPTE, South China Normal University, 510006 Guangzhou, China.
J Chem Phys. 2012 Nov 7;137(17):174101. doi: 10.1063/1.4764472.
We study fractional brownian motion and Lévy flights in periodic corrugated channels without any external driving forces. From numerical simulations, we find that both fractional gaussian noise and Lévy-stable noise in asymmetric corrugated channels can break thermodynamical equilibrium and induce directed transport. The rectified mechanisms for fractional brownian motion and Lévy flights are different. The former is caused by non-uniform spectral distribution (low or high frequencies) of fractional gaussian noise, while the latter is due to the nonthermal character (occasional long jumps) of the Lévy-stable noise. For fractional brownian motion, average velocity increases with the Hurst exponent for the persistent case, while for the antipersistent case there exists an optimal value of Hurst exponent at which average velocity takes its maximal value. For Lévy flights, the group velocity decreases monotonically as the Lévy index increases. In addition, for both cases, the optimized periodicity and radius at the bottleneck can facilitate the directed transport. Our results could be implemented in constrained structures with narrow channels and pores where the particles undergo anomalous diffusion.
我们研究了无外部驱动力的周期性波纹通道中的分数布朗运动和 Lévy 飞行。通过数值模拟,我们发现非对称波纹通道中的分数高斯噪声和 Lévy 稳定噪声都可以打破热力学平衡并诱导定向输运。分数布朗运动和 Lévy 飞行的整流机制不同。前者是由分数高斯噪声的非均匀谱分布(低频或高频)引起的,而后者则是由于 Lévy 稳定噪声的非热特征(偶尔的长跳跃)引起的。对于分数布朗运动,在持久情况下,平均速度随赫斯特指数的增加而增加,而在反持久情况下,平均速度取最大值时存在赫斯特指数的最佳值。对于 Lévy 飞行,群速度随着 Lévy 指数的增加而单调减小。此外,对于这两种情况,瓶颈处优化的周期性和半径可以促进定向输运。我们的结果可以在具有窄通道和孔隙的受限结构中实现,其中粒子经历异常扩散。