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Formation and manipulation of a metallic wire of single gold atoms

机译:单个金原子的金属线的形成和操纵

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The continuing miniaturization of microelectronics raises the prospect of nanometre-scale devices with mechanical and electrical properties that are qualitatively different from those at larger dimensions. The investigation of these properties, and particularly the increasing influence of quantum effects on electron transport, has therefore attracted much interest. Quantum properties of the conductance can be observed when 'breaking' a metallic contact: as two metal electrodes in contact with each other are slowly retracted, the contact area undergoes structural rearrangements until it consists in its final stages of only a few bridging atoms. Just before the abrupt transition to tunnelling occurs, the electrical conductance through a monovalent metal contact is always close to a value of 2e~2/h (≈12.9 kΩ~(-1)), where e is the charge on an electron and h is Planck's constant. This value corresponds to one quantum unit of conductance, thus indicating that the 'neck' of the contact consists of a single atom. In contrast to previous observations of only single-atom necks, here we describe the breaking of atomic-scale gold contacts, which leads to the formation of gold chains one atom thick and at least four atoms long. Once we start to pull out a chain, the conductance never exceeds 2 e~2/h, confirming that it acts as a one-dimensional quantized nanowire. Given their high stability and the ability to support ballistic electron transport, these structures seem well suited for the investigation of atomic-scale electronics.
机译:微电子学的不断小型化提出了具有机械和电学性质与较大尺寸的机械和电学性质不同的纳米级器件的前景。因此,对这些性质的研究,尤其是量子效应对电子传输的日益增长的影响,引起了人们的极大兴趣。当“断开”金属接触时,可以观察到电导的量子性质:由于两个相互接触的金属电极缓慢缩回,接触区域经历结构重排,直到其最后阶段只有几个桥连原子。就在突然过渡到隧穿之前,通过单价金属接触的电导率始终接近2e〜2 / h(≈12.9kΩ〜(-1)),其中e是电子上的电荷,h是普朗克的常数。该值对应于一个电导的量子单位,因此表明接触的“颈部”由单个原子组成。与以前只有一个原子颈的观察结果相反,在这里我们描述了原子级金接触的破坏,这导致了金链的形成,该金链一个原子厚,至少四个原子长。一旦我们开始拉出一条链,电导就不会超过2 e〜2 / h,这证明它可以充当一维量化的纳米线。鉴于它们的高稳定性和支持弹道电子传输的能力,这些结构似乎非常适合于原子级电子学的研究。

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