Signatures of superconductivity and pseudogap formation in non-equilibrium nodal quasiparticles revealed by ultrafast angle-resolved photoemission
arXiv:1312.1735 · doi:10.1103/PhysRevB.88.245132
Abstract
We use time- and angle-resolved photoemission to measure the nodal non-equilibrium electronic states in various dopings of BiSrCaCuO. We find that the initial pump-induced transient signal of these ungapped states is strongly affected by the onset of the superconducting gap at , superconducting pairing fluctuations at , and the pseudogap at . Moreover, marks a suggestive threshold in the fluence-dependent transient signal, with the appearance of a critical fluence below that corresponds to the energy required to break apart all Cooper pairs. These results challenge the notion of a nodal-antinodal dichotomy in cuprate superconductors by establishing a new link between nodal quasiparticles and the cuprate phase diagram.
Physical Review B, in press (2013)
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