Kirchhof Jan N, Bolotin Kirill I
Department of Physics, Freie Universität Berlin, Arnimallee 14, 14195 Berlin, Germany.
NPJ 2D Mater Appl. 2023;7(1):10. doi: 10.1038/s41699-023-00374-4. Epub 2023 Feb 23.
We present a tunable phononic crystal which can be switched from a mechanically insulating to a mechanically conductive (transmissive) state. Specifically, in our simulations for a phononic lattice under biaxial tension ( = = 0.01 N m), we find a bandgap for out-of-plane phonons in the range of 48.8-56.4 MHz, which we can close by increasing the degree of tension uniaxiality ( / ) to 1.7. To manipulate the tension distribution, we design a realistic device of finite size, where / is tuned by applying a gate voltage to a phononic crystal made from suspended graphene. We show that the bandgap closing can be probed via acoustic transmission measurements and that the phononic bandgap persists even after the inclusion of surface contaminants and random tension variations present in realistic devices. The proposed system acts as a transistor for MHz-phonons with an on/off ratio of 10 (100 dB suppression) and is thus a valuable extension for phonon logic applications. In addition, the transition from conductive to isolating can be seen as a mechanical analogue to a metal-insulator transition and allows tunable coupling between mechanical entities (e.g. mechanical qubits).
我们展示了一种可调谐声子晶体,它可以从机械绝缘状态切换到机械导电(透射)状态。具体而言,在我们对双轴拉伸( = = 0.01 N m)下的声子晶格进行的模拟中,我们发现面外声子的带隙在48.8 - 56.4 MHz范围内,通过将单轴拉伸程度( / )增加到1.7可以关闭该带隙。为了控制张力分布,我们设计了一个实际的有限尺寸器件,其中通过向由悬浮石墨烯制成的声子晶体施加栅极电压来调节 / 。我们表明,可以通过声学传输测量来探测带隙关闭,并且即使在实际器件中存在表面污染物和随机张力变化的情况下,声子带隙仍然存在。所提出的系统充当具有10的开/关比(100 dB抑制)的MHz声子晶体管,因此是声子逻辑应用的有价值扩展。此外,从导电到隔离的转变可以被视为金属 - 绝缘体转变的机械类似物,并允许机械实体(例如机械量子比特)之间的可调谐耦合。