Quantum confinement of itinerant electrons in atomically smooth ultrathin lead films produces strong oscillations in the thickness-dependent film energy. By adding extra electrons via bismuth alloying, we showed that both the structural stability and the superconducting properties of such films can be tuned. The phase boundary (upper critical field) between the superconducting vortex state and the normal state indicates an anomalous suppression of superconducting order just below the critical temperature, Tc. This suppression varies systematically with the film thickness and the bismuth content and can be parametrized in terms of a characteristic temperature, Tc * (less than Tc), that is inversely proportional to the scattering mean free pa...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
In the present paper, we report a theoretical study of the magnetic London penetration depth in ultr...
Superconductivity is a collective quantum phenomenon that is inevitably suppressed in reduced dimens...
Bismuth (Bi) and Bismuth-Antimony (Bi [subscript 1-x] Sb [subscript x]) alloys are considered very p...
In ultrathin lead films, the super conductance at the exceedingly two dimensional limit is explored,...
In ultrathin lead films, the super conductance at the exceedingly two dimensional limit is explored,...
textElectrons show unusual and interesting behaviors both in low dimensions and on material surfaces...
Epitaxial films that are only several atoms layers thick exhibit interesting properties associated w...
We explore the implications of Berezinskii-Kosterlitz-Thouless (BKT) critical behavior and variable-...
Measurements have been made of the critical temperatures T of c amorphous bismuth alloy films conta...
High-temperature superconductors belong to the group of strongly correlated materials. In these comp...
Poster Division: Math and Physical Sciences: 3rd Place (The Ohio State University Edward F. Hayes Gr...
Two-dimensional (2D) materials are not expected to be metals at low temperature owing to electron lo...
We investigate ultrathin superconducting TiN films, which are very close to the localization thresho...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
In the present paper, we report a theoretical study of the magnetic London penetration depth in ultr...
Superconductivity is a collective quantum phenomenon that is inevitably suppressed in reduced dimens...
Bismuth (Bi) and Bismuth-Antimony (Bi [subscript 1-x] Sb [subscript x]) alloys are considered very p...
In ultrathin lead films, the super conductance at the exceedingly two dimensional limit is explored,...
In ultrathin lead films, the super conductance at the exceedingly two dimensional limit is explored,...
textElectrons show unusual and interesting behaviors both in low dimensions and on material surfaces...
Epitaxial films that are only several atoms layers thick exhibit interesting properties associated w...
We explore the implications of Berezinskii-Kosterlitz-Thouless (BKT) critical behavior and variable-...
Measurements have been made of the critical temperatures T of c amorphous bismuth alloy films conta...
High-temperature superconductors belong to the group of strongly correlated materials. In these comp...
Poster Division: Math and Physical Sciences: 3rd Place (The Ohio State University Edward F. Hayes Gr...
Two-dimensional (2D) materials are not expected to be metals at low temperature owing to electron lo...
We investigate ultrathin superconducting TiN films, which are very close to the localization thresho...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
In the present paper, we report a theoretical study of the magnetic London penetration depth in ultr...