Graf J, Gweon G-H, McElroy K, Zhou S Y, Jozwiak C, Rotenberg E, Bill A, Sasagawa T, Eisaki H, Uchida S, Takagi H, Lee D-H, Lanzara A
Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2007 Feb 9;98(6):067004. doi: 10.1103/PhysRevLett.98.067004. Epub 2007 Feb 7.
A universal high energy anomaly in the single particle spectral function is reported in three different families of high temperature superconductors by using angle-resolved photoemission spectroscopy. As we follow the dispersing peak of the spectral function from the Fermi energy to the valence band complex, we find dispersion anomalies marked by two distinctive high energy scales, E1 approximately 0.38 eV and E2 approximately 0.8 eV. E1 marks the energy above which the dispersion splits into two branches. One is a continuation of the near parabolic dispersion, albeit with reduced spectral weight, and reaches the bottom of the band at the Gamma point at approximately 0.5 eV. The other is given by a peak in the momentum space, nearly independent of energy between E1 and E2. Above E2, a bandlike dispersion reemerges. We conjecture that these two energies mark the disintegration of the low-energy quasiparticles into a spinon and holon branch in the high Tc cuprates.
利用角分辨光电子能谱,在三类不同的高温超导体中报道了单粒子谱函数中普遍存在的高能异常现象。当我们沿着谱函数的色散峰从费米能追踪到价带复合体时,发现色散异常由两个独特的高能标度标记,E1约为0.38电子伏特,E2约为0.8电子伏特。E1标记了色散分裂成两个分支的能量以上部分。一个是近抛物线色散的延续,尽管谱权重降低,并在约0.5电子伏特处的Γ点到达能带底部。另一个由动量空间中的一个峰给出,在E1和E2之间几乎与能量无关。在E2以上,带状色散重新出现。我们推测这两个能量标记了高温超导铜酸盐中低能准粒子分解为自旋子和空穴子分支的过程。