Cooper pairing in the iron-based high-Tc superconductors is often conjectured to involve bosonic fluctuations. Among the candidates are antiferromagnetic spin fluctuations and d-orbital fluctuations amplified by phonons. Any such electron–boson interaction should alter the electron’s ‘self-energy’, and then become detectable through consequent modifications in the energy dependence of the electron’s momentum and lifetime. Here we introduce a novel theoretical/experimental approach aimed at uniquely identifying the relevant fluctuations of iron-based superconductors by measuring effects of their self-energy. We use innovative quasiparticle interference (QPI) imaging techniques in LiFeAs to reveal strongly momentum-space anisotropic self-ener...
The electronic states and superconductivity in iron pnictides are studied on the basis of the 16 ban...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
We use inelastic neutron scattering to study energy and wave vector dependence of spin fluctuations ...
Cooper pairing in the iron-based high-Tc superconductors is often conjectured to involve bosonic flu...
Cooper pairing in the iron-based high-T-c superconductors(1-3) is often conjectured to involve boson...
If strong electron-electron interactions between neighboring Fe atoms mediate the Cooper pairing in ...
In this dissertation we focus on the investigation of the pairing mechanism in the recently discover...
Strong electronic correlations, emerging from the parent Mott insulator phase, are key to copper-bas...
Motivated by recent experimental reports of significant spin–orbit coupling (SOC) and a sign-changin...
Spin fluctuations are considered to be one of the candidates that drive a sign-reversed s(+/-) super...
Recently, experimental studies of the spin excitation spectrum revealed, like in the cuprates, a str...
We develop a model for the effect of a magnetic field on quasiparticle interference in an iron-based...
The electronic states and superconductivity in iron pnictides are studied on the basis of the 16 ban...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
We use inelastic neutron scattering to study energy and wave vector dependence of spin fluctuations ...
Cooper pairing in the iron-based high-Tc superconductors is often conjectured to involve bosonic flu...
Cooper pairing in the iron-based high-T-c superconductors(1-3) is often conjectured to involve boson...
If strong electron-electron interactions between neighboring Fe atoms mediate the Cooper pairing in ...
In this dissertation we focus on the investigation of the pairing mechanism in the recently discover...
Strong electronic correlations, emerging from the parent Mott insulator phase, are key to copper-bas...
Motivated by recent experimental reports of significant spin–orbit coupling (SOC) and a sign-changin...
Spin fluctuations are considered to be one of the candidates that drive a sign-reversed s(+/-) super...
Recently, experimental studies of the spin excitation spectrum revealed, like in the cuprates, a str...
We develop a model for the effect of a magnetic field on quasiparticle interference in an iron-based...
The electronic states and superconductivity in iron pnictides are studied on the basis of the 16 ban...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
We use inelastic neutron scattering to study energy and wave vector dependence of spin fluctuations ...