International audienceUnconventional superconductivity has recently been discovered in the iron-based superconducting silicide LaFeSiH. By using the complementary techniques of muon spin rotation, tunneling diode oscillator, and density-functional theory, we investigate the magnetic penetration depth and thereby the superconducting gap of this high-temperature superconductor. We find that the magnetic penetration depth displays a sub-T2 behavior in the low-temperature regime below Tc/3, which evidences a nodal structure of the gap (or a gap with very deep minima). Even if the topology of the computed Fermi surface is compatible with the s±-wave case with accidental nodes, its nesting and orbital-content features may eventually result in a d...
Although the pairing mechanism of Fe-based superconductors (FeSCs) has not yet been settled with con...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
We reiterate, in more details, our previous proposal of using quasiparticle interference to determin...
Unconventional superconductivity has recently been discovered in the iron-based superconducting sili...
International audiencePnictogens and chalcogens are both viable anions for promoting Fe-based superc...
The superconducting properties of Lu(2)Fe(3)Si(5) with T(c) = 6.1 K have been investigated using low...
Pnictogens and chalcogens are both viable anions for promoting Fe-based superconductivity, and inten...
We report the synthesis and characterization of the novel silicide LaFeSiH displaying superconductiv...
The pairing symmetry of Cooper pair is a pivotal characteristic for a superconductor. In particular,...
We report the results of a muon-spin rotation ($\mu$SR) experiment to determine the superconducting ...
We report low-temperature heat transport measurements on superconducting iron sulfide FeS with T-c a...
We find evidence that the newly discovered Fe-based superconductor KCa2Fe4As4F2 (Tc = 33.36(7) K) di...
We have investigated the superconducting state of HfIrSi using magnetization, specific heat, muon sp...
The superconducting gap structure in iron-based high-temperature superconductors (Fe-HTSs) is non-un...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
Although the pairing mechanism of Fe-based superconductors (FeSCs) has not yet been settled with con...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
We reiterate, in more details, our previous proposal of using quasiparticle interference to determin...
Unconventional superconductivity has recently been discovered in the iron-based superconducting sili...
International audiencePnictogens and chalcogens are both viable anions for promoting Fe-based superc...
The superconducting properties of Lu(2)Fe(3)Si(5) with T(c) = 6.1 K have been investigated using low...
Pnictogens and chalcogens are both viable anions for promoting Fe-based superconductivity, and inten...
We report the synthesis and characterization of the novel silicide LaFeSiH displaying superconductiv...
The pairing symmetry of Cooper pair is a pivotal characteristic for a superconductor. In particular,...
We report the results of a muon-spin rotation ($\mu$SR) experiment to determine the superconducting ...
We report low-temperature heat transport measurements on superconducting iron sulfide FeS with T-c a...
We find evidence that the newly discovered Fe-based superconductor KCa2Fe4As4F2 (Tc = 33.36(7) K) di...
We have investigated the superconducting state of HfIrSi using magnetization, specific heat, muon sp...
The superconducting gap structure in iron-based high-temperature superconductors (Fe-HTSs) is non-un...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
Although the pairing mechanism of Fe-based superconductors (FeSCs) has not yet been settled with con...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
We reiterate, in more details, our previous proposal of using quasiparticle interference to determin...