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Robust modeling of acoustic phonon transmission in nanomechanical structures

机译:纳米力学结构中声学声子变速器的鲁棒建模

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摘要

The transmission of acoustic phonons is an important element in the design and performance of nano-mechanical devices operating in the mesoscopic limit. Analytic expressions for the power transmission coefficient, T, exist only in the low-frequency limit, in cases described by thin-plate elasticity theory, and for well-defined elastic waveguiding geometries. We compare two numerical techniques based on finite-element computations to determine the frequency dependence of T for arbitrary phonon scattering structures. Both methods take into account acoustic mode conversion to acoustic and optical modes. In one case, the phase and amplitude of complex-valued reflected waves are determined and related to transmission through a Fresnel equation, while in the other, the magnitude of the transmitted mechanical power is directly calculated. The numerical robustness of these methods is demonstrated by considering the transmission across an abrupt junction in a rectangular elastic beam, a well-known problem of considerable importance in mesoscopic device physics. The simulations presented extend the standard results for acoustic phonon transmission at an abrupt junction, and are in good agreement with analytic predictions in the long-wavelength limit. More generally, the numerical methods developed provide an effective tool for calculating acoustic mode energy loss in nano-mechanical resonators through mode conversion and heat transfer in arbitrary mesoscopic structures.
机译:声学声子的传输是在介于间隔极限中操作的纳米机械装置的设计和性能的重要元素。用于电力传输系数T的分析表达,仅存在于薄板弹性理论的情况下的低频限制,以及用于明确定义的弹性波动几何形状。我们基于有限元计算比较了两个数值技术,以确定T对于任意声子散射结构的频率依赖性。这两种方法都考虑了声模式转换到声学和光学模式。在一种情况下,确定复值反射波的相位和幅度与通过菲涅耳方程的传输相关,而在另一个中,直接计算透射机械电源的大小。通过考虑矩形弹性束中的突然结的传输,在思科设备物理学中的相当重要的问题中,通过考虑突然结的传动来证明这些方法的数值稳健性。仿真呈现在突然结处的声学声子传输的标准结果扩展,并且与长波长极限的分析预测吻合良好。更一般地,通过模式转换和随意的介面结构中的传热来计算用于计算纳米机械谐振器中的声学模式能量损失的有效工具。

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  • 来源
    《Applied Physics Letters》 |2019年第11期|113101.1-113101.5|共5页
  • 作者单位

    Cornell Univ Sibley Sch Mech Engn Ithaca NY 14853 USA;

    NASA Goddard Spaceflight Ctr 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Goddard Spaceflight Ctr 8800 Greenbelt Rd Greenbelt MD 20771 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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