Unconventional superconductivity and magnetism in Sr2RuO 4 and related materials consequences for the symmetry of the
superconducting order parameter. In particular, reviewing spin
fluctuation Separate tuning of nematicity and spin fluctuations to unravel the origin of superconductivity in FeSeBaek S.H.,
Ok J.M.,
Kim J.S.,
Aswartham S.,
Morozov I.,
Chareev D.,
Urata T.,
Tanigaki K.,
Tanabe Y.,
Büchner B.,
Efremov D.V. relationship among nematic
order, spin
fluctuations, and
superconductivity has been a major challenge
Unconventional superconductivity and magnetism in Sr2RuO 4 and related materials consequences for the symmetry of the
superconducting order parameter. In particular, reviewing spin
fluctuation Spin-freezing mechanism in underdoped superconducting cuprates picture, namely the one of the extended charge density waves with imaginary
order parameter (id
Electronic theory for superconductivity in Sr2RuO4: Triplet pairing due to spin-fluctuation exchange order parameter. Furthermore, within our analysis and approximations we find that the
order parameter Electronic theory for superconductivity in Sr2RuO4: Triplet pairing due to spin-fluctuation exchange order parameter. Furthermore, within our analysis and approximations we find that the
order parameter Spin-freezing mechanism in underdoped superconducting cuprates picture, namely the one of the extended charge density waves with imaginary
order parameter (id
Theory for electron- and hole-doped cuprate superconductors: D-wave symmetry order parameter hole-and electron-doped cuprates dx2-y2 symmetry for the
superconducting order parameter. We find a