Zhang G M, Hu H, Yu L
Center for Advanced Studies, Tsinghua University, Beijing, China.
Phys Rev Lett. 2001 Jan 22;86(4):704-7. doi: 10.1103/PhysRevLett.86.704.
We consider a model of an Anderson impurity embedded in a d(x(2)-y(2))--wave superconducting state to describe the low-energy excitations of cuprate superconductors doped with a small amount of magnetic impurities. Because of the Dirac-like energy dispersion, a sharp localized resonance above the Fermi energy, showing a marginal Fermi liquid behavior ( omega ln omega as omega-->0), is predicted for the impurity states. The same logarithmic dependence of self-energy and a linear frequency dependence of the relaxation rate are also derived for the conduction electrons, characterizing a new universality class for the strong coupling fixed point. At the resonant energies, the spatial distribution of the electron density of states around the magnetic impurity is also calculated.
我们考虑一个嵌入d(x(2)-y(2))波超导态的安德森杂质模型,以描述掺杂少量磁性杂质的铜酸盐超导体的低能激发。由于类似狄拉克的能量色散,预计杂质态在费米能之上会出现一个尖锐的局域共振,表现出边缘费米液体行为(当ω→0时,ωlnω)。对于传导电子,还推导出自能的相同对数依赖性和弛豫率的线性频率依赖性,这表征了强耦合不动点的一个新的普适类。在共振能量处,还计算了磁性杂质周围态密度的电子密度的空间分布。