Gnoli Andrea, Sarracino Alessandro, Puglisi Andrea, Petri Alberto
Istituto dei Sistemi Complessi-CNR and Dipartimento di Fisica, Università Sapienza, p.le A. Moro 2, 00185 Rome, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052209. doi: 10.1103/PhysRevE.87.052209. Epub 2013 May 30.
We report the study of an experimental granular Brownian motor, inspired by the one published in Eshuis et al. [Phys. Rev. Lett. 104, 248001 (2010)], but different in some ingredients. As in that previous work, the motor is constituted by a rotating blade, the surfaces of which break the rotation-inversion symmetry through alternated patches of different inelasticity, immersed in a gas of granular particles. The main difference of our experimental setup is in the orientation of the main axis, which is parallel to the (vertical) direction of shaking of the granular fluid, guaranteeing an isotropic distribution for the velocities of colliding grains, characterized by a variance v(0)(2). We also keep the granular system diluted, in order to compare with Boltzmann-equation-based kinetic theory. In agreement with theory, we observe the crucial role of Coulomb friction which induces two main regimes: (i) rare collisions, with an average angular velocity <ω>v(0)(3), and (ii) frequent collisions (FC), with <ω>v(0). We also study the fluctuations of the angle spanned in a large-time interval Δθ, which in the FC regime is proportional to the work done upon the motor. We observe that the fluctuation relation is satisfied with a slope which weakly depends on the relative collision frequency.
我们报告了一项对实验性颗粒布朗马达的研究,该研究受埃斯huis等人发表在《物理评论快报》104, 248001 (2010)上的研究启发,但在某些方面有所不同。与之前的工作一样,该马达由一个旋转叶片构成,其表面通过交替分布的具有不同非弹性的斑块打破了旋转反演对称性,该叶片浸没在颗粒气体中。我们实验装置的主要区别在于主轴的方向,它与颗粒流体的(垂直)振动方向平行,从而保证了碰撞颗粒速度的各向同性分布,其特征方差为v(0)(2)。我们还保持颗粒系统处于稀释状态,以便与基于玻尔兹曼方程的动力学理论进行比较。与理论一致,我们观察到库仑摩擦的关键作用,它导致了两种主要状态:(i) 罕见碰撞,平均角速度<ω>v(0)(3),以及 (ii) 频繁碰撞 (FC),<ω>v(0)。我们还研究了在大时间间隔Δθ内所张角度的涨落,在FC状态下,该涨落与作用在马达上的功成正比。我们观察到涨落关系得到满足,其斜率弱依赖于相对碰撞频率。