arXiv · 1603.03851
Superconductivity driven by pairing of the coherent parts of the physical electrons
Abstract
How the superconductivity in unconventional superconductors emerges from the diverse mother normal states is still a big puzzle. Whatever the mother normal states are the superconductivity is {\em normal} with BCS-like behaviours of the paired quasiparticles in condensation. To reconcile the diverse mother normal states and the normal superconductivity in unconventional superconductors, we revisit a proposal that the emergence of the low-energy coherent parts of the physical electrons, which survive from the interaction correlations, is an essential prerequisite for superconductivity. The superconductivity is driven by the pair condensation of these coherent parts of the physical electrons. Moreover the incoherent parts of the physical electrons can enhance the superconducting transition temperature $T_c$ although they are not in driving role in the emergence of the superconductivity. Some experimental responses of the coherent parts of the physical electrons are predicted.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yuehua Su, Chao Zhang. 2017-12-15. Superconductivity driven by pairing of the coherent parts of the physical electrons. https://doi.org/10.1016/j.physc.2017.12.001
Cite the original work for its findings. Save a collection to share your selection of sources.