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Blowing the fuse: Berrys phase and runaway vibrations in molecular conductors

机译:保险丝烧断:浆果相和分子导体中的失控振动

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摘要

We examine a molecular bridge connecting two metallic electrodes. We find that an electronic current passing across the bridge can cause a vibrational instability of the molecule, which ultimately can lead to a breakdown of the bridge. This instability is generated by a hitherto never considered mechanism, which surprisingly involves the quantum mechanical phase of the electronic waves, the "Berry phase". This mechanism works for highly conducting bridges, and contrary to breakdown by traditional Joule heating, this instability is deterministic and occurs at certain critical voltages. We demonstrate the new mechanism using state-of-the-art ab initio calculations on realistic molecular bridges.
机译:我们研究了连接两个金属电极的分子桥。我们发现流过电桥的电流会引起分子的振动不稳定性,最终会导致电桥的击穿。这种不稳定性是由迄今为止从未考虑过的机制产生的,该机制令人惊讶地涉及电子波的量子力学阶段,即“贝里阶段”。这种机制适用于高传导电桥,与传统的焦耳加热导致的击穿相反,这种不稳定是确定性的,并在某些临界电压下发生。我们在现实的分子桥上使用最先进的从头计算来演示这种新机制。

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