arXiv · 1111.1822
Correlation and disorder-enhanced nematic spin response in superconductors with weakly broken rotational symmetry
Also available from
Abstract
Recent experimental and theoretical studies have highlighted the possible role of a electronic nematic liquid in underdoped cuprate superconductors. We calculate, within a model of d-wave superconductor with Hubbard correlations, the spin susceptibility in the case of a small explicitly broken rotational symmetry of the underlying lattice. We then exhibit how the induced spin response asymmetry is strongly enhanced by correlations as one approaches the instability to stripe order. In the disorder-induced stripe phase, impurities become spin nematogens with a C_2 symmetric impurity resonance state, and the disorder-averaged spin susceptibility remains only C_2 symmetric at low energies, similar to recent data from neutron scattering experiments on underdoped YBCO.
Explore related subjects
Keep this discovery
Brian M. Andersen, Siegfried Graser, P. J. Hirschfeld. 2011-11-08. Correlation and disorder-enhanced nematic spin response in superconductors with weakly broken rotational symmetry. https://doi.org/10.1016/j.physc.2012.04.030
Cite the original work for its findings. Save a collection to share your selection of sources.