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Thermionic emission in nodal-ring semimetals

机译:Nodal-Ring Semimetals的热量发射

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摘要

We theoretically investigate the thermionic emission from nodal-ring semimetals. The thermionic emission is found to be anisotropic in the x- and y-directions. The anisotropic emission can be enhanced by increasing the radius of nodal-ring b. The main feature of nodal-ring semimetals not only results in anisotropic thermionic emission but also affects the value of thermionic emission current density (TECD). The TECD of the lower branch of the energy-momentum dispersion increases with b, while the TECD of the upper branch decreases with b. Unlike in conventional materials, the TECD in nodal-ring semimetals depends on Fermi energy that is similar to the situation in Dirac semimetals. The underlined reason is that Dirac semimetals and nodal-ring semimetals have a linear or a linear-like energy-momentum dispersion while conventional materials have a parabolic energy-momentum dispersion. The TECD of nodal-ring semimetals depends strongly on work function and temperature.
机译:理论上,从理论上研究了节点环半型半球的热离子排放。发现热离子发射在X和Y方向上是各向异性的。通过增加节点环B的半径可以提高各向异性发射。 Nodal-Ring半定的主要特征不仅导致各向异性的热离子发射,而且影响热离子发射电流密度(TECD)的值。能量动量分散体的下部分支的TECD随B增加,而上枝的TECD用B降低。与常规材料不同,Nodal环半型中的TECD取决于Fermi能量,类似于Dirac半球的情况。下划线的原因是Dirac半纤维和Nodal-Ring半定具有线性或线性的能量动量分散,而常规材料具有抛物线能量分散体。 Nodal-Ring半定的TECD强烈取决于工作功能和温度。

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  • 来源
    《Journal of Applied Physics》 |2020年第6期|065108.1-065108.7|共7页
  • 作者单位

    Department of Applied Physics Xian University of Technology Xian 710048 China;

    School of Physics University of Wollongong Northfield Avenue Wollongong New South Wales 2522 Australia;

    School of Science East China University of Science and Technology Shanghai 200237 China;

    Department of Applied Physics Xian University of Technology Xian 710048 China;

    School of Physics University of Wollongong Northfield Avenue Wollongong New South Wales 2522 Australia;

  • 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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