Department of Physics, Okayama University, Okayama 700-8530, Japan.
Phys Rev Lett. 2010 Sep 24;105(13):137002. doi: 10.1103/PhysRevLett.105.137002.
We report the results of the Knight shift by ⁶³,⁶⁵Cu-NMR measurements on single-layered copper-oxide Bi₂Sr(₂-x)La(x)CuO(₆+δ) conducted under very high magnetic fields up to 44 T. The magnetic field suppresses superconductivity completely, and the pseudogap ground state is revealed. The ⁶³Cu-NMR Knight shift shows that there remains a finite density of states at the Fermi level in the zero-temperature limit, which indicates that the pseudogap ground state is a metallic state with a finite volume of Fermi surface. The residual density of states in the pseudogap ground state decreases with decreasing doping (increasing x) but remains quite large even at the vicinity of the magnetically ordered phase of x ≥ 0.8, which suggests that the density of states plunges to zero upon approaching the Mott insulating phase.
我们报告了在高达 44 T 的超高压磁场下,对单层铜氧化物 Bi₂Sr(₂-x)La(x)CuO(₆+δ)进行的⁶³,⁶⁵Cu-NMR 测量的 Knight 位移结果。磁场完全抑制了超导性,并揭示了赝能隙基态。⁶³Cu-NMR Knight 位移表明,在零温极限下费米能级仍存在有限的态密度,这表明赝能隙基态是具有有限费米面体积的金属态。赝能隙基态中的剩余态密度随着掺杂(增加 x)的减少而减少,但即使在 x≥0.8 的磁有序相附近也相当大,这表明在接近莫特绝缘相时,态密度降至零。