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Possible superconductivity from incoherent carriers in overdoped cuprates
Journal article   Open access

Possible superconductivity from incoherent carriers in overdoped cuprates

M. Čulo, C. Duffy, J. Ayres, M. Berben, Y.-T. Hsu, R.D.H. Hinlopen, B. Bernáth and N.E. Hussey
SciPost Physics, Vol.11(1), 012
07/2021

Abstract

Physics and Astronomy (all)
There is now compelling evidence that the normal state of superconducting overdoped cuprates is a strange metal comprising two distinct charge sectors, one governed by coherent quasiparticle excitations, the other seemingly incoherent and characterized by non-quasiparticle (Planckian) dissipation. The zero-temperature superfluid density n s (0) of overdoped cuprates exhibits an anomalous depletion with increased hole doping p, falling to zero at the edge of the superconducting dome. Over the same doping range, the effective zero-temperature Hall number n H (0) transitions from p to 1 + p. By taking into account the presence of these two charge sectors, we demonstrate that in the overdoped cuprates Tl 2 Ba 2 CuO 6 + δ and La 2−x Sr x CuO 4 , the growth in n s (0) as p is decreased from the overdoped side may be compensated by the loss of carriers in the coherent sector. Such a correspondence is contrary to expectations from conventional BCS theory and implies that superconductivity in overdoped cuprates emerges uniquely from the sector that exhibits incoherent transport in the normal state.
url
https://doi.org/10.21468/SCIPOSTPHYS.11.1.012View
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