Atomistic Simulation Centre, School of Mathematics and Physics, Queen's University Belfast, Belfast BT7 1NN, UK.
J Phys Condens Matter. 2012 Oct 10;24(40):402203. doi: 10.1088/0953-8984/24/40/402203. Epub 2012 Sep 18.
A current-carrying resonant nanoscale device, simulated by non-adiabatic molecular dynamics, exhibits sharp activation of non-conservative current-induced forces with bias. The result, above the critical bias, is generalized rotational atomic motion with a large gain in kinetic energy. The activation exploits sharp features in the electronic structure, and constitutes, in effect, an ignition key for atomic-scale motors. A controlling factor for the effect is the non-equilibrium dynamical response matrix for small-amplitude atomic motion under current. This matrix can be found from the steady-state electronic structure by a simpler static calculation, providing a way to detect the likely appearance, or otherwise, of non-conservative dynamics, in advance of real-time modelling.
一个载流的共振纳米器件,通过非绝热分子动力学模拟,在偏压下表现出非保守电流感应力的急剧激活。在超过临界偏压的情况下,结果是广义的旋转原子运动,动能得到了很大的提高。这种激活利用了电子结构中的尖锐特征,实际上为原子尺度的马达提供了点火关键。影响的一个控制因素是电流下小振幅原子运动的非平衡动力学响应矩阵。这个矩阵可以通过更简单的静态计算从稳态电子结构中找到,为实时建模之前检测非保守动力学的可能出现或否则提供了一种方法。