We study momentum and energy dependencies of the quasiparticle interference (QPI) response function in multiband superconductors in the framework of the strong-coupling Eliashberg approach. Within an effective two-band model we study the s± and s++ symmetry cases, corresponding to opposite or equal signs of the order parameters in the bands. We demonstrate that the momentum dependence of the QPI function is strikingly different for s± and s++ symmetries of the order parameter at energies close to the small gap. At the same time, the QPI response becomes indistinguishable for both symmetries at higher energies around the large gap. This result may guide future experiments on probing pairing symmetry in iron pnictides as well as in other unco...
In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This propert...
It has been a long-standing puzzle why electrons with repulsive interactions can form pairs in uncon...
We develop the full t-matrix theory of quasiparticle interference (QPI) for non-centrosymmetric (NCS...
We develop a theory of the quasiparticle interference (QPI) in multiband superconductors based on th...
Motivated by recent experimental reports of significant spin–orbit coupling (SOC) and a sign-changin...
Superconductors are important to study due to their many applications. Superconductivityarises when ...
We investigate the manifestation of strong electronic correlations in the quasiparticle interference...
We theoretically investigate the quasiparticle interference (QPI) in the optimally electron-doped Bi...
We model the quasiparticle interference (QPI) pattern in the recently discovered (K,Tl)FexSe2 superc...
Complete theoretical understanding of the most complex superconductors requires a detailed knowledge...
If strong electron-electron interactions between neighboring Fe atoms mediate the Cooper pairing in ...
recently discovered iron pnictide superconductors apparently present an unusual case of interband-ch...
Based on a phenomenological model with s± or s-wave pairing symmetry, the mixed-state effect on quas...
Experiments have observed superconductivity in atomically-thin metallic layers deposited on semicond...
We develop a model for the effect of a magnetic field on quasiparticle interference in an iron-based...
In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This propert...
It has been a long-standing puzzle why electrons with repulsive interactions can form pairs in uncon...
We develop the full t-matrix theory of quasiparticle interference (QPI) for non-centrosymmetric (NCS...
We develop a theory of the quasiparticle interference (QPI) in multiband superconductors based on th...
Motivated by recent experimental reports of significant spin–orbit coupling (SOC) and a sign-changin...
Superconductors are important to study due to their many applications. Superconductivityarises when ...
We investigate the manifestation of strong electronic correlations in the quasiparticle interference...
We theoretically investigate the quasiparticle interference (QPI) in the optimally electron-doped Bi...
We model the quasiparticle interference (QPI) pattern in the recently discovered (K,Tl)FexSe2 superc...
Complete theoretical understanding of the most complex superconductors requires a detailed knowledge...
If strong electron-electron interactions between neighboring Fe atoms mediate the Cooper pairing in ...
recently discovered iron pnictide superconductors apparently present an unusual case of interband-ch...
Based on a phenomenological model with s± or s-wave pairing symmetry, the mixed-state effect on quas...
Experiments have observed superconductivity in atomically-thin metallic layers deposited on semicond...
We develop a model for the effect of a magnetic field on quasiparticle interference in an iron-based...
In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This propert...
It has been a long-standing puzzle why electrons with repulsive interactions can form pairs in uncon...
We develop the full t-matrix theory of quasiparticle interference (QPI) for non-centrosymmetric (NCS...