We report the systematic study of the anomalous structures viz. dips and large zero bias enhancement in point contact Andreev reflection spectrum obtained between a normal metal and a superconductor. These are not explained in Blonder–Tinkham–Klapwizk formalism, which is conventionally used for analyzing normal metal–superconductor ballistic point contacts. We demonstrate that the anomalous structures are due to the contribution from the critical current of the point contact to the contact resistance when the contact is not in the pure ballistic regime
Andreev reflection is investigated in layered anisotropic normal metal/superconductor (N/S) systems ...
We present theoretical results for the change δG in the electrical conductance G of a mesoscopic sam...
Metallic point contacts were investigated at very low temperatures down to 50 mK using a piezoelectr...
The point-contact spectrum between a normal metal and a superconductor often shows unexpected sharp ...
In this work, we discuss the origin of several anomalies present in the point-contact Andreev reflec...
Andreev-reflection spectroscopy of elemental superconductors in contact with nonmagnetic normal m...
Andreev reflection is investigated in layered anisotropic normal metal / superconductor (N/S) system...
Point- contact Andreev- reflection spectroscopy (PCARS) is one of the most direct techniques to stud...
Superconductor – normal metal point contacts were investigated, using different combinations of Cu, ...
We performed point contact spectroscopy experiment by pushing gold tip on the ferromagnetic side of ...
Based on the boundary conditions derived for quasiclassical Green's functions, a theory of Andreev r...
Point-contact junctions on normal-metal-superconductor bilayers show asymmetries of different magnit...
We formulate a minimal model of point contact Andreev reflection spectroscopy of a normal-metal/mult...
Superconducting point contacts have been used for measuring magnetic polarizations, identifying magn...
Our previous point-contact Andreev reflection studies of the heavy-fermion superconductor CeCoIn5 us...
Andreev reflection is investigated in layered anisotropic normal metal/superconductor (N/S) systems ...
We present theoretical results for the change δG in the electrical conductance G of a mesoscopic sam...
Metallic point contacts were investigated at very low temperatures down to 50 mK using a piezoelectr...
The point-contact spectrum between a normal metal and a superconductor often shows unexpected sharp ...
In this work, we discuss the origin of several anomalies present in the point-contact Andreev reflec...
Andreev-reflection spectroscopy of elemental superconductors in contact with nonmagnetic normal m...
Andreev reflection is investigated in layered anisotropic normal metal / superconductor (N/S) system...
Point- contact Andreev- reflection spectroscopy (PCARS) is one of the most direct techniques to stud...
Superconductor – normal metal point contacts were investigated, using different combinations of Cu, ...
We performed point contact spectroscopy experiment by pushing gold tip on the ferromagnetic side of ...
Based on the boundary conditions derived for quasiclassical Green's functions, a theory of Andreev r...
Point-contact junctions on normal-metal-superconductor bilayers show asymmetries of different magnit...
We formulate a minimal model of point contact Andreev reflection spectroscopy of a normal-metal/mult...
Superconducting point contacts have been used for measuring magnetic polarizations, identifying magn...
Our previous point-contact Andreev reflection studies of the heavy-fermion superconductor CeCoIn5 us...
Andreev reflection is investigated in layered anisotropic normal metal/superconductor (N/S) systems ...
We present theoretical results for the change δG in the electrical conductance G of a mesoscopic sam...
Metallic point contacts were investigated at very low temperatures down to 50 mK using a piezoelectr...