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Shot Noise Suppression at Room Temperature in Atomic-Scale Au Junctions

机译:室温金原子结中散粒噪声的抑制

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Shot noise encodes additional information not directly inferable from simple electronic transport measurements. Previous measurements in atomic-scale metal junctions at cryogenic temperatures have shown suppression of the shot noise at particular conductance values. This suppression demonstrates that transport in these structures proceeds via discrete quantum channels. Using a high-frequency technique, we simultaneously acquire noise data and conductance histograms in Au junctions at room temperature and ambient conditions. We observe noise suppression at up to three conductance quanta, with possible indications of current-induced local heating and I/f noise in the contact region at high biases. These measurements demonstrate the quantum character of transport at room temperature at the atomic scale. This technique provides an additional tool for studying dissipation and correlations in nanodevices.
机译:散粒噪声编码了不能从简单的电子传输测量中直接推断出的其他信息。先前在低温下原子级金属结的测量表明,在特定电导值下散粒噪声得到抑制。这种抑制作用表明这些结构中的传输是通过离散的量子通道进行的。使用高频技术,我们可以同时获取室温和环境条件下Au结中的噪声数据和电导直方图。我们观察到在多达三个电导量子点处的噪声抑制,并可能指示出电流引起的局部发热和高偏置下接触区域中的I / f噪声。这些测量结果证明了室温下原子级传输的量子特征。该技术为研究纳米器件中的耗散和相关性提供了额外的工具。

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