Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universität Berlin, 14195 Berlin, Germany.
Phys Rev Lett. 2011 Jul 15;107(3):036804. doi: 10.1103/PhysRevLett.107.036804. Epub 2011 Jul 11.
We develop a scattering theory of current-induced forces exerted by the conduction electrons of a general mesoscopic conductor on slow "mechanical" degrees of freedom. Our theory describes the current-induced forces both in and out of equilibrium in terms of the scattering matrix of the phase-coherent conductor. Under general nonequilibrium conditions, the resulting mechanical Langevin dynamics is subject to both nonconservative and velocity-dependent Lorentz-like forces, in addition to (possibly negative) friction. We illustrate our results with a two-mode model inspired by hydrogen molecules in a break junction which exhibits limit-cycle dynamics of the mechanical modes.
我们发展了一种散射理论,用于描述一般介观导体中传导电子对缓慢“力学”自由度施加的电流感应力。我们的理论用相位相干导体的散射矩阵来描述平衡和非平衡状态下的电流感应力。在一般非平衡条件下,所得的力学朗之万动力学除了(可能为负的)摩擦之外,还受到非保守和速度相关的洛伦兹力的影响。我们用一个受氢分子在断键中启发的双模模型来说明我们的结果,该模型表现出力学模式的极限环动力学。