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首页> 外文期刊>ACS nano >Superconducting junction of a single-crystalline Au nanowire for an ideal Josephson device
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Superconducting junction of a single-crystalline Au nanowire for an ideal Josephson device

机译:理想约瑟夫森器件的单晶金纳米线的超导结

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We report on the fabrication and measurements of a superconducting junction of a single-crystalline Au nanowire, connected to Al electrodes. The current-voltage characteristic curve shows a clear supercurrent branch below the superconducting transition temperature of Al and quantized voltage plateaus on application of microwave radiation, as expected from Josephson relations. Highly transparent (0.95) contacts very close to an ideal limit of 1 are formed at the interface between the normal metal (Au) and the superconductor (Al). The very high transparency is ascribed to the single crystallinity of a Au nanowire and the formation of an oxide-free contact between Au and Al. The subgap structures of the differential conductance are well explained by coherent multiple Andreev reflections (MAR), the hallmark of mesoscopic Josephson junctions. These observations demonstrate that single crystalline Au nanowires can be employed to develop novel quantum devices utilizing coherent electrical transport.
机译:我们报告了与Al电极连接的单晶Au纳米线的超导结的制造和测量。如约瑟夫森关系所预期的那样,电流-电压特性曲线显示出在Al的超导转变温度以下以及在施加微波辐射后的量化电压平稳状态下的清晰的超电流分支。在普通金属(Au)与超导体(Al)之间的界面处形成了非常接近理想极限1的高度透明(0.95)触点。极高的透明度归因于Au纳米线的单结晶度以及Au和Al之间无氧化物接触的形成。微分电导的亚隙结构可以通过相干的多个安德列夫反射(MAR)(介观约瑟夫森结的特征)很好地解释。这些观察表明,单晶金纳米线可用于开发利用相干电传输的新型量子器件。

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