论文标题

通过低摩擦黄金滑动机械可获得的范德华设备

Mechanically-reconfigurable van der Waals devices via low-friction gold sliding

论文作者

Barabas, Andrew Z., Sequeira, Ian, Yang, Yuhui, Barajas-Aguilar, Aaron H., Taniguchi, Takashi, Watanabe, Kenji, Sanchez-Yamagishi, Javier D.

论文摘要

范德华(VDW)材料的界面,例如石墨和六边形硝酸硼(HBN),由于其原子纤维表面和弱VDW键,表现出低摩擦滑动。我们证明,微型金黄金在HBN上也具有低摩擦的滑动。这使设备在环境条件下以及原位对测量低温恒温器的设备特征进行任意重新定位。我们演示了机械可调节的VDW设备,其中设备几何和位置是连续可调的参数。通过在石墨烯-HBN设备上制造可滑动的顶部门,我们产生了机械可调的量子点接触,可以连续修改电子限制和边缘状态耦合。此外,我们将原位滑动与同时的电子测量相结合,以创建新型的扫描探针实验,其中栅极电极甚至整个VDW异质结构设备都可以通过在目标上滑动来空间扫描。

Interfaces of van der Waals (vdW) materials such as graphite and hexagonal boron nitride (hBN) exhibit low-friction sliding due to their atomically-flat surfaces and weak vdW bonding. We demonstrate that microfabricated gold also slides with low friction on hBN. This enables the arbitrary post-fabrication repositioning of device features both at ambient conditions as well as in-situ to a measurement cryostat. We demonstrate mechanically-reconfigurable vdW devices where device geometry and position are continuously-tunable parameters. By fabricating slidable top gates on a graphene-hBN device, we produce a mechanically-tunable quantum point contact where electron confinement and edge-state coupling can be continuously modified. Moreover, we combine in-situ sliding with simultaneous electronic measurements to create new types of scanning probe experiments, where gate electrodes and even entire vdW heterostructures devices can be spatially scanned by sliding across a target.

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