The Cooper pairing mechanism of heavy fermion superconductors(1-4), long thought to be due to spin fluctuations(5-7), has not yet been determined. It is the momentum space (k-space) structure of the superconducting energy gap Delta(k) that encodes specifics of this pairing mechanism. However, because the energy scales are so low, it has not been possible to directly measure Delta(k) for any heavy fermion superconductor. Bogoliubov quasiparticle interference imaging(8), a proven technique for measuring the energy gaps of superconductors with high critical temperatures(9-11), has recently been proposed(12) as a new method to measure Delta(k) in heavy fermion superconductors, specifically CeCoIn5 (ref. 13). By implementing this method, we dete...
In exotic superconductors, including high-T-c copper oxides, the interactions mediating electron Coo...
We show that in recently discovered heavy fermion superconductors, quasi two-dimensional CeCoIn5 and...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
The Cooper pairing mechanism of heavy fermion superconductors(1-4), long thought to be due to spin f...
Spectroscopic Imaging Scanning Tunneling Microscopy (SI-STM) measurements have previously been appli...
We demonstrate that the electronic band structure extracted from quasiparticle interference spectros...
We report an in situ scanning tunneling microscopy study of atomically thin films of CeCoIn5, a d-wa...
Superconductivity in the heavy-fermion compound $\chem{CeCoIn_5}$ has recently been found to be due...
The heavy fermion superconductor CeCoIn5 demonstrates remarkable similarities to the high-Tc cuprate...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
We present scanning tunneling spectroscopy measurements of the local quasiparticles' excitation spec...
Heavy fermion compounds are host to many interesting but poorly understood strong correlation effect...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
In exotic superconductors, including high-T-c copper oxides, the interactions mediating electron Coo...
We show that in recently discovered heavy fermion superconductors, quasi two-dimensional CeCoIn5 and...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
The Cooper pairing mechanism of heavy fermion superconductors(1-4), long thought to be due to spin f...
Spectroscopic Imaging Scanning Tunneling Microscopy (SI-STM) measurements have previously been appli...
We demonstrate that the electronic band structure extracted from quasiparticle interference spectros...
We report an in situ scanning tunneling microscopy study of atomically thin films of CeCoIn5, a d-wa...
Superconductivity in the heavy-fermion compound $\chem{CeCoIn_5}$ has recently been found to be due...
The heavy fermion superconductor CeCoIn5 demonstrates remarkable similarities to the high-Tc cuprate...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
We present scanning tunneling spectroscopy measurements of the local quasiparticles' excitation spec...
Heavy fermion compounds are host to many interesting but poorly understood strong correlation effect...
Superconductivity in lanthanide-and actinide-based heavy-fermion (HF) metals can have different micr...
In exotic superconductors, including high-T-c copper oxides, the interactions mediating electron Coo...
We show that in recently discovered heavy fermion superconductors, quasi two-dimensional CeCoIn5 and...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...