We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional momentum dependence of the superconducting gap in FeSe. We find that on both the hole and electron Fermi surfaces, the magnitude of the gap follows the distribution of dyz orbital weight. Furthermore, we theoretically determine the momentum dependence of the superconducting gap by solving the linearized gap equation using a tight-binding model which quantitatively describes both the experimental band dispersions and orbital characters. By considering a Fermi surface only including one electron pocket, as observed spectroscopically, we obtain excellent agreement with the experimental gap structure. Our finding of a scaling between the superconductin...
The structure of the superconducting gap in unconventional superconductors holds a key to understand...
The iron-pnictide superconductors have a layered structure formed by stacks of FeAs planes from whic...
The three-dimensional band structure and superconducting gap of Ba0.6K0.4Fe2As2 are ...
We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional moment...
The iron-based superconductors are characterized by multiple-orbital physics where all the five Fe 3...
The iron-based superconductors are characterized by multiple-orbital physics where all the five Fe 3...
FeSe exhibits a novel ground state in which superconductivity coexists with a nematic order in the a...
For movie S1, see http://www.physik.uni-leipzig.de/~kreisel/oscp/S1.mp4, for movie S2, see http://ww...
The intense scrutiny of the electronic structure of FeSe over the last few years has been motivated ...
LR acknowledges funding from the Royal Commission for the Exhibition 1851.The nature and origin of e...
We have performed high-resolution angle-resolved photoemission spectroscopy on the optimally doped ...
FeSe is the focus of intense research interest because of its unusual non-magnetic nematic state and...
Scanning tunneling spectroscopy has been used to investigate the superconducting gaps of FeSe 1−xSx ...
The presence of dxz-dyz orbital ordering is often considered a hallmark of the nematic phase of Fe-b...
The iron-based superconductor FeSe has attracted much recent attention because of its simple crystal...
The structure of the superconducting gap in unconventional superconductors holds a key to understand...
The iron-pnictide superconductors have a layered structure formed by stacks of FeAs planes from whic...
The three-dimensional band structure and superconducting gap of Ba0.6K0.4Fe2As2 are ...
We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional moment...
The iron-based superconductors are characterized by multiple-orbital physics where all the five Fe 3...
The iron-based superconductors are characterized by multiple-orbital physics where all the five Fe 3...
FeSe exhibits a novel ground state in which superconductivity coexists with a nematic order in the a...
For movie S1, see http://www.physik.uni-leipzig.de/~kreisel/oscp/S1.mp4, for movie S2, see http://ww...
The intense scrutiny of the electronic structure of FeSe over the last few years has been motivated ...
LR acknowledges funding from the Royal Commission for the Exhibition 1851.The nature and origin of e...
We have performed high-resolution angle-resolved photoemission spectroscopy on the optimally doped ...
FeSe is the focus of intense research interest because of its unusual non-magnetic nematic state and...
Scanning tunneling spectroscopy has been used to investigate the superconducting gaps of FeSe 1−xSx ...
The presence of dxz-dyz orbital ordering is often considered a hallmark of the nematic phase of Fe-b...
The iron-based superconductor FeSe has attracted much recent attention because of its simple crystal...
The structure of the superconducting gap in unconventional superconductors holds a key to understand...
The iron-pnictide superconductors have a layered structure formed by stacks of FeAs planes from whic...
The three-dimensional band structure and superconducting gap of Ba0.6K0.4Fe2As2 are ...