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首页> 外文期刊>Physical review letters >Transverse Magnetosonic Waves and Viscoelastic Resonance in a Two-Dimensional Highly Viscous Electron Fluid
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Transverse Magnetosonic Waves and Viscoelastic Resonance in a Two-Dimensional Highly Viscous Electron Fluid

机译:二维高度粘性电子流体中的横向磁性波和粘弹性共振

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In high-mobility materials, conduction electrons can form a viscous fluid at low temperatures. We demonstrate that in a high-frequency flow of a two-dimensional electron fluid in a magnetic field the two types of excitations can coexist: those of the shear stress (previously unknown transverse magnetosound) and those associated with the charge density (conventional magnetoplasmons). The dispersion law and the damping coefficient of transverse magnetosound originate from the time dispersion of the viscosity of the fluid. Both the viscoelastic and the plasmonic components of the flow exhibit the recently proposed viscoelastic resonance that is related to the own dynamics of shear stress of charged fluids in a magnetic field. We argue that the generation of transverse magnetosound, manifesting itself by the viscoelastic resonance, is apparently responsible for the peak in photoresistance and peculiarities in photovoltage observed in ultrahigh-mobility GaAs quantum wells.
机译:在高迁移率材料中,传导电子可以在低温下形成粘性流体。我们证明,在磁场中的二维电子流体的高频流动中,两种类型的激励可以共存:剪切应力(先前未知的横向磁致)和与充电密度相关的那些(常规磁体上) 。横向磁棘轮的分散法和阻尼系数来自流体粘度的时间分散。流动的粘弹性和等离子体组分均表现出最近提出的粘弹性共振,其与磁场中带电流体的剪切应力的自身动态相关。我们认为,通过粘弹性共振表现出横向磁锁的产生显然对在超高迁移率GaAs量子孔中观察到的光电电压中的光致抗蚀剂和特性的峰值。

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  • 来源
    《Physical review letters 》 |2019年第23期| 236801.1-236801.6| 共6页
  • 作者单位

    Ioffe Inst St Petersburg 194021 Russia;

    Ioffe Inst St Petersburg 194021 Russia;

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