Science. 1992 Jun 19;256(5064):1664-7. doi: 10.1126/science.256.5064.1664.
The spin response of a nested Fermi surface represented by a tight binding energy band is found to exhibit scaling in frequency divided by temperature within a restricted regime close to half-filling of the band. Computations of the spin susceptibility reveal a surprising momentum variation at various temperatures and frequencies. Neutron scattering data on the high-temperature superconductor YBa(2)Cu(3)O(6+x) are analyzed for scaling near a momentum vector that spans nested regions of the orbit. Changes in the Fermi energy remove the scaling properties and reduce the susceptibility to the conventional Fermi liquid behavior of ordinary metals. These results imply that pairing mechanisms of superconductivity need to cope with competing spin density wave and charge density wave instabilities.
由紧束缚能带表示的嵌套费米面的自旋响应在接近能带半满的受限区域内,发现其在频率除以温度的标度中表现出规律。自旋磁化率的计算揭示了在不同温度和频率下令人惊讶的动量变化。对高温超导体 YBa(2)Cu(3)O(6+x)的中子散射数据进行了分析,以研究跨越轨道嵌套区域的动量矢量附近的标度情况。费米能的变化消除了标度性质,并使磁化率降低到普通金属的传统费米液体行为。这些结果表明,超导的配对机制需要应对竞争的自旋密度波和电荷密度波不稳定性。