Borisenko SV, Golden MS, Legner S, Pichler T, Durr C, Knupfer M, Fink J, Yang G, Abell S, Berger H
Institut fur Festkorper- und Werkstofforschung Dresden, P.O. Box 270016, D-01171 Dresden, Germany.
Phys Rev Lett. 2000 May 8;84(19):4453-6. doi: 10.1103/PhysRevLett.84.4453.
On the basis of angle-scanned photoemission data recorded using unpolarized radiation, with high (E,k) resolution, and an extremely dense sampling of k space, we resolve the current controversy regarding the normal state Fermi surface (FS) in Bi(2)Sr(2)CaCu(2)O(8+delta). The true picture is simple, self-consistent, and robust: the FS is holelike, with the form of rounded tubes centered on the corners of the Brillouin zone. Two further types of features are also clearly observed: shadow FSs, which are most likely to be due to short range antiferromagnetic spin correlations, and diffraction replicas of the main FS caused by passage of the photoelectrons through the modulated Bi-O planes.
基于使用非偏振辐射记录的角度扫描光电子能谱数据,该数据具有高(E,k)分辨率以及k空间的极密集采样,我们解决了目前关于Bi(2)Sr(2)CaCu(2)O(8+δ)正常态费米面(FS)的争议。真实情况简单、自洽且可靠:费米面呈空穴型,其形状为以布里渊区角点为中心的圆形管。还清晰地观察到另外两种特征:阴影费米面,最有可能是由短程反铁磁自旋关联引起;以及光电子穿过调制的Bi-O平面导致的主费米面的衍射副本。