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耦合石墨烯纳米管量子器件的制造。

Fabrication of coupled graphene-nanotube quantum devices.

机构信息

II Institute of Physics B, RWTH Aachen University, D-52074 Aachen, EU, Germany.

出版信息

Nanotechnology. 2013 Jan 25;24(3):035204. doi: 10.1088/0957-4484/24/3/035204. Epub 2012 Dec 21.

Abstract

We report on the fabrication and characterization of all-carbon hybrid quantum devices based on graphene and single-walled carbon nanotubes. We discuss both carbon nanotube quantum dot devices with graphene charge detectors and nanotube quantum dots with graphene leads. The devices are fabricated by chemical vapor deposition growth of carbon nanotubes and subsequent structuring of mechanically exfoliated graphene. We study the detection of individual charging events in the carbon nanotube quantum dot by a nearby graphene nanoribbon and show that they lead to changes of up to 20% of the conductance maxima in the graphene nanoribbon, acting as a well performing charge detector. Moreover, we discuss an electrically coupled graphene-nanotube junction, which exhibits a tunneling barrier with tunneling rates in the low GHz regime. This allows us to observe Coulomb blockade on a carbon nanotube quantum dot with graphene source and drain leads.

摘要

我们报告了基于石墨烯和单壁碳纳米管的全碳混合量子器件的制造和特性。我们讨论了具有石墨烯电荷探测器的碳纳米管量子点器件和具有石墨烯引线的纳米管量子点。这些器件是通过化学气相沉积生长碳纳米管和随后对机械剥落的石墨烯进行结构处理来制造的。我们研究了通过附近的石墨烯纳米带检测碳纳米管量子点中的单个充电事件,并表明它们导致石墨烯纳米带中电导最大值的变化高达 20%,从而作为性能良好的电荷探测器。此外,我们讨论了电耦合的石墨烯-纳米管结,它表现出具有低 GHz 隧穿率的隧穿势垒。这使我们能够在具有石墨烯源极和漏极引线的碳纳米管量子点上观察到库仑阻塞。

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