National High Magnetic Field Laboratory, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2011 Jun 3;106(22):226402. doi: 10.1103/PhysRevLett.106.226402. Epub 2011 May 31.
A multiple wave vector (Q) reconstruction of the Fermi surface is shown to yield a profoundly different electronic structure to that characteristic of single wave vector reconstruction, despite their proximity in energy. We consider the specific case in which ordering is generated by Q(x)=[2πa,0] and Q(y)=[0,2πb] (in which a=b=1/4)-similar to those identified in neutron diffraction and scanning tunneling microscopy experiments-and more generally show that an isolated pocket adjacent to the nodal point k(nodal)=[±π/2,±π/2] is a protected feature of such a multiple-Q model, potentially corresponding to the nodal "Fermi arcs" observed in photoemission and the small size of the electronic heat capacity found in high magnetic fields-importantly, containing electron carriers which can yield negative Hall and Seebeck coefficients observed in high magnetic fields.
多波矢(Q)重建的费米表面显示出与单波矢重建截然不同的电子结构,尽管它们在能量上相近。我们考虑了由 Q(x)=[2πa,0] 和 Q(y)=[0,2πb] 产生有序的特殊情况(其中 a=b=1/4)——类似于中子衍射和扫描隧道显微镜实验中确定的情况——并更普遍地表明,与节点 k(nodal)=[±π/2,±π/2] 相邻的孤立口袋是这种多 Q 模型的一个受保护特征,可能对应于光电子发射中观察到的节点“费米弧”以及在高磁场中发现的电子热容小——重要的是,其中包含了在高磁场中观察到的可以产生负霍尔和塞贝克系数的载流子。