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首页> 外文期刊>Applied Physics Letters >Circular electromechanical resonators based on hexagonal-boron nitride-graphene heterostructures
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Circular electromechanical resonators based on hexagonal-boron nitride-graphene heterostructures

机译:基于六边形 - 氮化物 - 石墨烯异质结构的圆形机电谐振器

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摘要

2D materials such as graphene and hexagonal-boron nitride (h-BN), to name a few, when layered on top of each other offer a class of metamaterials with interesting properties. For example, the twisting degree of freedom between two layers has started the field of twistronics. The exceptional attributes of 2D materials like ultra-low mass, robustness, and high tunability make them very suitable for nanoelectrome-chanical systems (NEMS). Yet the mechanical properties of these heterostructures in the form of NEMS have not been studied extensively. Such 2D NEMS hold promise for various technological applications, namely, ultrafast sensors, actuators, etc. We report fabrication and characterization of h-BN graphene heterostructure-based circular nanoelectromechanical resonators on sapphire substrates. The devices are measured at cryogenic temperatures and exhibit multiple mode frequencies, which are highly tunable with gate voltage. A continuum mechanics model is employed to analyze the transmission (S_(21)) data of the fundamental mode. Parameters like built-in tension obtained from the fit are used to identify the indices (m, n) of higher mechanical modes observed for the device, providing further device characterization. Such 2D NEMS could offer a way to study diverse electronic phenomena such as superconductivity in twisted bilayer graphene (tBLG) heterostructures.
机译:如石墨烯和六边形 - 氮化物(H-BN),诸如彼此顶部的分层时,将几种具有有趣性质的超材料提供了几种。例如,两层之间自由度的扭曲程度开始了扭曲的领域。 2D材料等超低质量,鲁棒性和高可调性等特殊属性使其非常适合纳米电型型系统(NEM)。然而,这些异质结构以NEMS形式的这种异质结构尚未被广泛研究。这种2D NEMS占据各种技术应用,即超快传感器,致动器等的承诺。我们在蓝宝石衬底上报告了H-BN石墨烯异质结构基圆形纳米机电谐振器的制造和表征。这些器件在低温温度下测量,并且具有多种模式频率,其具有高度可调谐的栅极电压。采用连续体型模型来分析基本模式的传输(S_(21))数据。从拟合获得的内置张力等参数用于识别为器件观察到的较高机械模式的索引(M,N),提供了进一步的设备表征。这种2D NEM可以提供一种方法来研究多样化的电子现象,如扭曲双层石墨烯(TBLG)异质结构中的超导性。

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  • 来源
    《Applied Physics Letters 》 |2020年第18期| 183103.1-183103.5| 共5页
  • 作者单位

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

    National Institute for Materials Science Namiki 1-1 Tsukuba 305-0044 Ibaraki Japan;

    National Institute for Materials Science Namiki 1-1 Tsukuba 305-0044 Ibaraki Japan;

    Department of Physics and Astronomy University of Utah Salt Lake City Utah 84112 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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