We present a theory of tunneling spectroscopy for normal metal/Larkin-Ovchinnikov state junctions in which the spatial periodic modulation in the pair potential amplitude is taken into account. The tunneling spectra show the characteristic line shapes reflecting the minigap structures under the periodic pair potentials depending on the boundary condition of the pair potentials at the junction interface. These features are qualitatively different from the tunneling spectra of the Fulde-Ferrell state. We propose an experimental setup which identifies the superconducting state of CeCoIn5.</p
International audienceWe considered a two-band superconductor with a nonzero interband quasiparticle...
Motivated by recent scanning tunneling microscopy experiments on single magnetic impurities on super...
We study tunneling spectroscopy between a normal metal and an underdoped cuprate superconductor mode...
We present a theory of tunneling spectroscopy for normal metal/Larkin-Ovchinnikov state junctions in...
We present the derivation of boundary conditions on a wave function at the normal metal/superconduct...
We develop a microscopic model to calculate point-contact spectra between a metallic tip and a super...
We present results for a multichannel tunneling model that describes point-contact spectra between a...
A theory of Andreev conductance is formulated for junctions involving normal metals (N) and multiban...
International audienceWe performed tunneling spectroscopy of a carbon nanotube quantum dot (QD) coup...
Superconductivity is a fascinating electronic order in which electrons pair up due to an attractive ...
grantor: University of TorontoThis thesis studies the tunneling spectroscopy of a pure d-w...
We study the local density of states (LDOS) in systems of Luttinger-liquid nanowires connected to a ...
We present tunnel spectroscopy experiments on the proximity effect in lateral superconductor–normal-...
We demonstrate that the electronic band structure extracted from quasiparticle interference spectros...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
International audienceWe considered a two-band superconductor with a nonzero interband quasiparticle...
Motivated by recent scanning tunneling microscopy experiments on single magnetic impurities on super...
We study tunneling spectroscopy between a normal metal and an underdoped cuprate superconductor mode...
We present a theory of tunneling spectroscopy for normal metal/Larkin-Ovchinnikov state junctions in...
We present the derivation of boundary conditions on a wave function at the normal metal/superconduct...
We develop a microscopic model to calculate point-contact spectra between a metallic tip and a super...
We present results for a multichannel tunneling model that describes point-contact spectra between a...
A theory of Andreev conductance is formulated for junctions involving normal metals (N) and multiban...
International audienceWe performed tunneling spectroscopy of a carbon nanotube quantum dot (QD) coup...
Superconductivity is a fascinating electronic order in which electrons pair up due to an attractive ...
grantor: University of TorontoThis thesis studies the tunneling spectroscopy of a pure d-w...
We study the local density of states (LDOS) in systems of Luttinger-liquid nanowires connected to a ...
We present tunnel spectroscopy experiments on the proximity effect in lateral superconductor–normal-...
We demonstrate that the electronic band structure extracted from quasiparticle interference spectros...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
International audienceWe considered a two-band superconductor with a nonzero interband quasiparticle...
Motivated by recent scanning tunneling microscopy experiments on single magnetic impurities on super...
We study tunneling spectroscopy between a normal metal and an underdoped cuprate superconductor mode...