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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Diffraction catastrophes and semiclassical quantum mechanics for Veselago lensing in graphene
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Diffraction catastrophes and semiclassical quantum mechanics for Veselago lensing in graphene

机译:石墨烯中维塞拉戈透镜的衍射突变和半经典量子力学

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We study the effect of trigonal warping on the focusing of electrons by n-p junctions in graphene. We find that perfect focusing, which was predicted for massless Dirac fermions, is only preserved for one specific lattice orientation. In the general case, trigonal warping leads to the formation of cusp caustics, with a different position of the focus for graphene's two valleys. We develop a semiclassical theory to compute these positions and find very good agreement with tight-binding simulations. Considering the transmission as a function of potential strength, we find that trigonal warping splits the single Dirac peak into two distinct peaks, leading to valley polarization. We obtain the transmission curves from tight-binding simulations and find that they are in very good agreement with the results of a billiard model that incorporates trigonal warping. Furthermore, the positions of the transmission maxima and the scaling of the peak width are accurately predicted by our semiclassical theory. Our semiclassical analysis can easily be carried over to other Dirac materials, which generally have different Fermi surface distortions.
机译:我们研究了三角形翘曲对石墨烯中n-p结对电子聚焦的影响。我们发现,对无质量狄拉克费米子所预测的完美聚焦只保留了一种特定的晶格取向。在一般情况下,三角形翘曲会导致尖峰苛性碱的形成,而石墨烯的两个谷的焦点位置不同。我们开发了一种半经典理论来计算这些位置,并与紧密绑定模拟找到了很好的一致性。考虑到传输与潜在强度的关系,我们发现三角翘曲将单个狄拉克峰分裂为两个不同的峰,从而导致谷极化。我们从紧密结合的模拟中获得了传输曲线,发现它们与包含三角翘曲的台球模型的结果非常吻合。此外,通过我们的半经典理论可以准确预测透射最大值的位置和峰宽的缩放比例。我们的半经典分析可以轻松地应用于其他Dirac材料,这些材料通常具有不同的费米表面变形。

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