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首页> 外文期刊>ACS nano >Manifestation of Kinetic Inductance in Terahertz Plasmon Resonances in Thin-Film Cd3As2
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Manifestation of Kinetic Inductance in Terahertz Plasmon Resonances in Thin-Film Cd3As2

机译:薄膜CD3As2中太赫兹等离子体共振动力学电感的表现

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摘要

Three-dimensional (3D) semimetals have been predicted and demonstrated to have a wide variety of interesting properties associated with their linear energy dispersion. In analogy to two-dimensional (2D) Dirac semimetals, such as graphene, Cd3As2 has shown ultrahigh mobility and large Fermi velocity and has been hypothesized to support plasmons at terahertz frequencies. In this work, we experimentally demonstrate synthesis of high quality large-area Cd3As2 thin films through thermal evaporation as well as the experimental realization of plasmonic structures consisting of periodic arrays of Cd3As2 stripes. These arrays exhibit sharp resonances at terahertz frequencies with associated quality factors (Q) as high as similar to 3.7 (at 0.82 THz). Such spectrally narrow resonances can be understood on the basis of a long momentum scattering time, which in our films can approach similar to 1 ps at room temperature. Moreover, we demonstrate an ultrafast tunable response through excitation of photoinduced carriers in optical pump/terahertz probe experiments. Our results evidence that the intrinsic 3D nature of Cd3As2 might provide for a very robust platform for terahertz plasmonic applications. Moreover, the long momentum scattering time as well as large kinetic inductance in Cd3As2 also holds enormous potential for the redesign of passive elements such as inductors and hence can have a profound impact in the field of RF integrated circuits.
机译:已经预测了三维(3D)半型,并证明具有与线性能量分散相关的各种有趣的性质。类似于二维(2D)DIRAC半矩形,例如石墨烯,CD3AS2示出了超高迁移率和大型费米速度,并且已经假设以支持太赫兹频率的等离子体。在这项工作中,我们通过热蒸发实验证明了高质量的大面积CD3AS2薄膜的合成以及由CD3AS2条纹周期阵列组成的等离子体结构的实验性实现。这些阵列在带有相关质量因子(Q)的太赫兹频率下表现出急剧的共振,高于3.7(0.82至086 ZZ)。可以基于长的动量散射时间来理解这种光谱窄的共振,在长期散射时间内,在我们的薄膜中可以在室温下与1 ps相似。此外,我们通过光学泵/太赫兹探针实验中的光导载流子激发来展示超快可调响应。我们的结果证明CD3AS2的内在3D性质可能为太赫兹等离子体应用提供非常强大的平台。此外,CD3AS2中的长动量散射时间以及大型动力学电感也具有巨大的电位,使诸如电感器的无源元件的重新设计,因此可以在RF集成电路的领域具有深远的影响。

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