Rozenbaum Viktor M, Makhnovskii Yurii A, Shapochkina Irina V, Sheu Sheh-Yi, Yang Dah-Yen, Lin Sheng Hsien
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 106, Taiwan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jul;88(1):012104. doi: 10.1103/PhysRevE.88.012104. Epub 2013 Jul 8.
We investigate a Brownian pump which, being powered by a flashing ratchet mechanism, produces net particle transport through a membrane. The extension of the Parrondo's approach developed for reversible Brownian motors [Parrondo, Phys. Rev. E 57, 7297 (1998)] to adiabatically driven pumps is given. We demonstrate that the pumping mechanism becomes especially efficient when the time variation of the potential occurs adiabatically fast or adiabatically slow, in perfect analogy with adiabatically driven Brownian motors which exhibit high efficiency [Rozenbaum et al., Phys. Rev. E 85, 041116 (2012)]. At the same time, the efficiency of the pumping mechanism is shown to be less than that of Brownian motors due to fluctuations of the number of particles in the membrane.
我们研究了一种布朗泵,它由闪烁棘轮机制提供动力,可实现粒子通过膜的净传输。文中给出了将为可逆布朗马达所开发的帕隆多方法[帕隆多,《物理评论E》57,7297(1998)]扩展到绝热驱动泵的情况。我们证明,当势的时间变化绝热地快或绝热地慢时,泵送机制会变得特别高效,这与表现出高效率的绝热驱动布朗马达完全类似[罗森鲍姆等人,《物理评论E》85,041116(2012)]。同时,由于膜中粒子数的波动,泵送机制的效率被证明低于布朗马达的效率。