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Marginal Fermi liquid resonance induced by a quantum magnetic impurity in d-wave superconductors

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journal contribution
posted on 2024-07-11, 20:23 authored by Guang-Ming Zhang, Hui HuHui Hu, Lu Yu
We consider a model of an Anderson impurity embedded in a dx2-y2-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 ( ωlnω as ω→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.

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PDF (Accepted manuscript)

ISSN

0031-9007

Journal title

Physical Review Letters

Volume

86

Issue

4

Pagination

3 pp

Publisher

American Physical Society

Copyright statement

Copyright © 2001 The American Physical Society. The accepted manuscript is reproduced in accordance with the copyright policy of the publisher for noncommercial use only.

Language

eng

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