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Interplay of Dirac fermions and heavy quasiparticles in solids

机译:狄拉克费米子与重质半固体之间的相互作用

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Many-body interactions in crystalline solids can be conveniently described in terms of quasiparticles with strongly renormalized masses as compared with those of non-interacting particles. Examples of extreme mass renormalization are on the one hand graphene, where the charge carriers obey the linear dispersion relation of massless Dirac fermions, and on the other hand heavy-fermion materials where the effective electron mass approaches the mass of a proton. Here we show that both extremes, Dirac fermions, like they are found in graphene and extremely heavy quasiparticles characteristic for Kondo materials, may not only coexist in a solid but can also undergo strong mutual interactions. Using the example of EuRh2Si2, we explicitly demonstrate that these interactions can take place at the surface and in the bulk. The presence of the linear dispersion is imposed solely by the crystal symmetry, whereas the existence of heavy quasiparticles is caused by the localized nature of the 4 f states.
机译:结晶固体中的多体相互作用可以方便地用与非相互作用颗粒相比具有重归一化质量的准颗粒来描述。极端质量重归一化的示例一方面是石墨烯,其中载流子遵循无质量的狄拉克费米子的线性色散关系,另一方面,是重费米子材料,其有效电子质量接近质子的质量。在这里,我们表明,狄拉克费米子这两个极端子(如在石墨烯中发现的那样)和近藤材料特有的非常重的准粒子不仅可能共存于固体中,而且还可能发生强烈的相互作用。使用EuRh 2 Si 2 的示例,我们明确证明了这些相互作用可以发生在表面和整体中。线性色散的存在仅由晶体对称性决定,而重的准粒子的存在是由4 f态的局部性质引起的。

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