Ring Markus, Weber David, Haiber Patrick, Pauly Fabian, Nielaba Peter, Scheer Elke
Physics Department, University of Konstanz, 78457 Konstanz, Germany.
Okinawa Institute of Science and Technology Graduate University, Onna-son, Okinawa 904-0495, Japan.
Nano Lett. 2020 Aug 12;20(8):5773-5778. doi: 10.1021/acs.nanolett.0c01597. Epub 2020 Jul 10.
We study voltage-induced conductance changes of Pb, Au, Al, and Cu atomic contacts. The experiments are performed in vacuum at low temperature using mechanically controllable break junctions. We determine switching histograms, i.e., distribution functions of switching voltages and switching currents, as a function of the conductance. We observe a clear material dependence: Au reveals the highest and almost conductance-independent switching voltage, while Al has the lowest with a pronounced dependence on the conductance. The theoretical study uses density functional theory and a generalized Langevin equation considering the pumping of particular phonon modes. We identify a runaway voltage as the threshold at which the pumping destabilizes the atomic arrangement. We find qualitative agreement between the average switching voltage and the runaway voltage regarding the material and conductance dependence and contact-to-contact variation of the average characteristic voltages, suggesting that the phonon pumping is a relevant mechanism driving the rearrangements in the experimental contacts.
我们研究了铅、金、铝和铜原子接触的电压诱导电导变化。实验在真空中低温下使用机械可控断裂结进行。我们确定了开关直方图,即开关电压和开关电流的分布函数,作为电导的函数。我们观察到明显的材料依赖性:金显示出最高且几乎与电导无关的开关电压,而铝的开关电压最低且对电导有明显依赖性。理论研究使用密度泛函理论和考虑特定声子模式泵浦的广义朗之万方程。我们将失控电压确定为泵浦使原子排列不稳定的阈值。我们发现平均开关电压和失控电压在材料、电导依赖性以及平均特征电压的接触间变化方面存在定性一致,这表明声子泵浦是驱动实验接触中重排的相关机制。