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Role of interaction on noise-induced transport of two coupled particles in Brownian ratchet devices

机译:相互作用对布朗棘轮装置中两个耦合粒子噪声诱导输运的作用

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摘要

The motion of elastically coupled Brownian particles in ratchet-like potentials has attracted much recent interest due to its application to transport processes in many fields, including models of DNA polymers. We consider the influence of the type of interacting force on the transport of two particles in a one-dimensional flashing ratchet. Our aim is to examine whether the common assumption of elastic coupling captures the important features of ratchet transport when the inter-particle forces are more complex. We compare Lennard-Jones type interaction to the classical case of elastically coupled particles. Numerical simulations agree with analytical formulas for the limiting cases where the coupling is very weak or very strong. Parameter values where the Lennard-Jones force is not well approximated by a linearization of the force about the equilibrium distance are identified.
机译:弹性耦合布朗粒子在棘轮状势中的运动最近引起了人们的广泛关注,因为它在许多领域的传输过程中得到了应用,包括DNA聚合物的模型。我们考虑了相互作用力类型对一维闪变棘轮中两个粒子传输的影响。我们的目的是研究当粒子间力更复杂时,弹性耦合的常见假设是否捕获了棘轮输运的重要特征。我们将 Lennard-Jones 型相互作用与弹性耦合粒子的经典情况进行了比较。数值模拟与耦合非常弱或非常强的极限情况的解析公式一致。确定了 Lennard-Jones 力不能通过力对平衡距离的线性化很好地近似的参数值。

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