论文标题
各向异性声子介导的电子传输在手性韦伊尔半法
Anisotropic phonon-mediated electronic transport in chiral Weyl semimetals
论文作者
论文摘要
对异国情调的,量化的光学和电响应的发现和观察激发了对非磁性手性晶体的兴趣。在这类材料中,六组V型过渡金属Ditetrelides,即XY $ _2 $(X = V,NB,TA和Y = SI,GE,GE),在高对称线上的宿主复合Weyl节点,在时间逆向不变的Momenta上具有Kramers-Weyl fermions。此外,其中至少两种材料,NBGE $ _2 $和NBSI $ _2 $,在低温下显示超导过渡。在这些系统中,强烈的电子相互作用和复杂的费米表面拓扑的相互作用为研究超导性和流体动力电子传输提供了机会。对于这个更广泛的问题,我们提出了一项关于这种材料家族的电子传输和电子散射的理论研究,特别关注nbge $ _2 $ vs. vs. nbsi $ _2 $,以及其他组v ditetrelides。我们阐明了NBGE $ _2 $的大型和各向异性的室温电阻率的显微镜起源,并以其他相关的散射寿命(包括动量 - 重弹性和动量支持)表现出强烈的电子播种散射。我们的工作探讨了在这些手性Weyl半法中观察流体动力电子传输的有趣可能性。
Discovery and observations of exotic, quantized optical and electrical responses have sparked renewed interest in nonmagnetic chiral crystals. Within this class of materials, six group V transition metal ditetrelides, that is, XY$_2$ (X = V, Nb, Ta and Y = Si, Ge), host composite Weyl nodes on high-symmetry lines, with Kramers-Weyl fermions at time-reversal invariant momenta. In addition, at least two of these materials, NbGe$_2$ and NbSi$_2$, exhibit superconducting transitions at low temperatures. The interplay of strong electron-phonon interaction and complex Fermi surface topology present an opportunity to study both superconductivity and hydrodynamic electron transport in these systems. Towards this broader question, we present an ab initio theoretical study of the electronic transport and electron-phonon scattering in this family of materials, with a particular focus on NbGe$_2$ vs. NbSi$_2$, and the other group V ditetrelides. We shed light on the microscopic origin of NbGe$_2$'s large and anisotropic room temperature resistivity and contextualize its strong electron-phonon scattering with a presentation of other relevant scattering lifetimes, both momentum-relaxing and momentum-conserving. Our work explores the intriguing possibility of observing hydrodynamic electron transport in these chiral Weyl semimetals.