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Nonlocal electrodynamics in Weyl semimetals

机译:Weyl Semimetals中的非局部电动动力学

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摘要

Recently synthesized three-dimensional materials with Dirac spectrum exhibit peculiar electric transport qualitatively different from its two-dimensional analog, graphene. By neglecting impurity scattering, the real part of the conductivity is strongly frequency dependent, while the imaginary part is nonzero unlike in undoped, clean graphene. The Coulomb interaction between electrons is unscreened as in a dielectric and hence is long range. We demonstrate that the interaction correction renders the electrodynamics nonlocal on a mesoscopic scale. The longitudinal conductivity sigma(L) and the transverse conductivity sigma(T) are different in the long-wavelength limit and consequently the standard local Ohm's law description does not apply. This leads to several remarkable effects in optical response. The p-polarized light generates in these materials bulk plasmons as well as the transversal waves. At a specific frequency the two modes coincide, a phenomenon impossible in a local medium. For any frequency there is a Brewster angle where total absorption occurs, turning the Weyl semimetals opaque. The effect of the surface, including the Fermi arcs, is discussed.
机译:最近合成的三维材料具有DIAC谱的特殊电气传输与其二维模拟,石墨烯定性不同。通过忽略杂质散射,导电性的实数是频率强烈的,而虚构部分是非零,不同于未掺杂的清洁石墨烯。电子之间的库仑相互作用在电介质中被旋转,因此是长距离的。我们证明相互作用校正使电动力非识别在介观标尺上呈现。纵向导电性Sigma(L)和横向导电性Sigma(t)在长波长极限中不同,因此标准本地欧姆的法律描述不适用。这导致光学响应中的几个显着影响。 P偏振光在这些材料散装等离子体以及横向波中产生。在特定频率下,两种模式重合,在本地培养基中不可能的现象。对于任何频率,存在完全吸收的毛刺角,转动Weyl半定的不透明。讨论了表面,包括费米弧的效果。

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