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MODEL FOR THE ONSET OF NONLINEAR FLOW DISSIPATION IN 2D SUPERFLUID HELIUM FILMS.

机译:二维超流氦膜中非线性流耗散的发生模型。

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摘要

A model for the onset of nonlinear dissipation in AC and DC flows is presented as an extension of the linear theory of Ambegaokar, Halperin, Nelson, and Siggia to include to flow velocity. The renormalization group calculation is carried out on a computer to determine the dissipation as a function of superfluid velocity. We find the onset of nonlinear dissipation is driven by two mechanisms whose relative contributions are temperature dependent. The free vortex contribution is most important at the higher temperatures whereas the bound pair contribution is dominant at low temperatures. The model is fitted to experimental measurements with two weakly coupled adjustable parameters: the vortex diffusivity and a free vortex creation time. Our model does not predict a critical velocity in the usual sense except at T = 0, but we define a characteristic velocity in order to compare the theory with experiment. At T = 0 we find a critical velocity given by the Feynman criterion, where the frequency dependent vortex diffusion length coincides with the zero in the vortex energy. In addition, a novel experimental apparatus using a 3(mu) I.D. capillary to allow us to change the helium film thickness at low temperatures is described.
机译:提出了交流和直流流中非线性耗散开始的模型,作为Ambegaokar,Halperin,Nelson和Siggia线性理论的扩展,以包括流速。在计算机上执行重归一化组计算,以确定耗散与超流体速度的函数。我们发现非线性耗散的发生是由两种机制驱动的,它们的相对贡献取决于温度。自由涡旋贡献在较高温度下最重要,而束缚对贡献在低温下占主导地位。该模型适用于具有两个弱耦合可调参数的实验测量:涡流扩散率和自由涡流产生时间。除了在T = 0时,我们的模型通常不会预测临界速度,但是为了将理论与实验进行比较,我们定义了特征速度。在T = 0时,我们找到了由费曼准则给出的临界速度,其中与频率相关的涡旋扩散长度与涡旋能量中的零重合。另外,使用3μI.D.的新型实验装置。描述了允许我们在低温下改变氦膜厚度的毛细管。

著录项

  • 作者

    GILLIS, KEITH ALAN.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Condensed matter physics.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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