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Atomic switches of metallic point contacts by plasmonic heating

机译:通过等离子加热的金属点触点的原子开关

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摘要

Electronic switches with nanoscale dimensions satisfy an urgent demand for further device miniaturization. A recent heavily investigated approach for nanoswitches is the use of molecular junctions that employ photochromic molecules that toggle between two distinct isoforms. In contrast to the reports on this approach, we demonstrate that the conductance switch behavior can be realized with only a bare metallic contact without any molecules under light illumination. We demonstrate that the conductance of bare metallic quantum contacts can be reversibly switched over eight orders of magnitude, which substantially exceeds the performance of molecular switches. After the switch process, the gap size between two electrodes can be precisely adjusted with subangstrom accuracy by controlling the light intensity or polarization. Supported by simulations, we reveal a more general and straightforward mechanism for nanoswitching behavior, i.e., atomic switches can be realized by the expansion of nanoelectrodes due to plasmonic heating.
机译:具有纳米级尺寸的电子开关满足了进一步使装置小型化的迫切需求。最近对纳米开关进行了广泛研究的方法是使用分子结,该分子结采用在两个不同同工型之间切换的光致变色分子。与这种方法的报告相反,我们证明在光照射下,仅裸露的金属接触就可以实现电导开关行为,而没有任何分子。我们证明了裸金属量子接触的电导率可以可逆地切换到八个数量级,这大大超过了分子开关的性能。在切换过程之后,可以通过控制光强度或偏振来精确调整亚电极精度的两个电极之间的间隙大小。在仿真的支持下,我们揭示了一种更通用,更直接的纳米开关行为机理,即,由于等离激元加热,纳米电极的膨胀可以实现原子开关。

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