布朗运动
旋转扩散
转动惯量
经典力学
惯性
物理
绕固定轴旋转
均方位移
转动能
角速度
机械
朗之万方程
粒子(生态学)
各向异性
分子动力学
量子力学
地质学
海洋学
作者
Е. А. Лисин,О. С. Ваулина,I. I. Lisina,О. Ф. Петров
摘要
, to active Langevin motion, which takes into account inertia. Despite a rich experimental background, there is a gap in the theory in the field where rotational inertia significantly affects the random walk of active particles on all time scales. In particular, although the well-known models of active Brownian and Ornstein-Uhlenbeck particles include a memory effect of the direction of motion, they are not applicable in the underdamped case, because the rotational inertia, which they do not account for, can partially prevent "memory loss" with increasing rotational diffusion. We describe the two-dimensional motion of a self-propelled particle with both translational and rotational inertia and velocity fluctuations. The proposed generalized analytical equations for the mean kinetic energy, mean-square displacement and noise-averaged trajectory of the self-propelled particle are confirmed by numerical simulations in a wide range of self-propulsion velocities, moments of inertia, rotational diffusivities, medium viscosities and observation times.
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