Graf J, d'Astuto M, Jozwiak C, Garcia D R, Saini N L, Krisch M, Ikeuchi K, Baron A Q R, Eisaki H, Lanzara A
Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2008 Jun 6;100(22):227002. doi: 10.1103/PhysRevLett.100.227002. Epub 2008 Jun 4.
We report the first measurement of the Cu-O bond stretching phonon dispersion in optimally doped Bi2Sr1.6La0.4Cu2O6+delta using inelastic x-ray scattering. We found a softening of this phonon at q=( approximately 0.25,0,0) from 76 to 60 meV, similar to the one reported in other cuprates. A comparison with angle-resolved photoemission data on the same sample revealed an excellent agreement in terms of energy and momentum between the angle-resolved photoemission nodal kink and the soft part of the bond stretching phonon. Indeed, we find that the momentum space where a 63+/-5 meV kink is observed can be connected with a vector q=(xi,0,0) with xi > or =0.22, corresponding exactly to the soft part of the bond stretching phonon.
我们报道了使用非弹性X射线散射对最佳掺杂的Bi2Sr1.6La0.4Cu2O6+δ中Cu - O键拉伸声子色散的首次测量。我们发现,在q =(约0.25,0,0)处,该声子从76毫电子伏特软化至60毫电子伏特,这与其他铜酸盐中报道的情况类似。对同一样品的角分辨光电子能谱数据进行比较后发现,角分辨光电子能谱节点扭结与键拉伸声子的软部分在能量和动量方面具有极佳的一致性。实际上,我们发现观察到63±5毫电子伏特扭结的动量空间可以与矢量q =(ξ,0,0)相连,其中ξ≥0.22,这恰好对应于键拉伸声子的软部分。