Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a semiconductor crystal and/or the formation of junctions between different materials (heterojunctions) to create rectifiers, potential barriers, and conducting pathways. With these building blocks, switching and amplification of electrical currents and voltages are achieved. As miniaturisation continues to ultra-scaled transistors with critical dimensions on the order of ten atomic lengths, the concept of doping to form junctions fails and forming heterojunctions becomes extremely difficult. Here, it is shown that it is not needed to introduce dopant atoms nor is a heterojunction required to achieve the fundamental electronic function of curren...
We report on fabrication of a two-dimensional topological insulator-Bi(111) bilayer on Sb nanofilms ...
Ferromagnetic thin-film structures separated by ultrathin dielectrics on the order of few nanometers...
Our era is defined by its technology, and our future is dependent on its continued evolution. Over t...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
This thesis investigates the properties of bismuth (Bi) nanostructures on a fundamental level and in...
Quantum confinement in a semimetal thin film such as bismuth (Bi) can lead to a semimetal-to-semicon...
The structure of thin terminated Bi(1 1 1) films of approximately 1nm thickness is investigated from...
Low temperature electronic transport properties have been studied in thin bismuth films with an emph...
Quantum confinement of itinerant electrons in atomically smooth ultrathin lead films produces strong...
Epitaxial Bi(111) films were subject to many and partly even controversial studies on the semimetal-...
Bismuth (Bi) and Bismuth-Antimony (Bi [subscript 1-x] Sb [subscript x]) alloys are considered very p...
Semiconductors based on bismuth halides have gained attention for a wide range of electronic applica...
We have fabricated and studied bismuth quantum dot devices, which consist of a bismuth ball of $\sim...
We have observed new phenomena in low-temperature transport measurements of a small ball of bismuth ...
We report an investigation of the low-temperature electrical transport properties of bismuth films u...
We report on fabrication of a two-dimensional topological insulator-Bi(111) bilayer on Sb nanofilms ...
Ferromagnetic thin-film structures separated by ultrathin dielectrics on the order of few nanometers...
Our era is defined by its technology, and our future is dependent on its continued evolution. Over t...
Solid state electronics relies on the intentional introduction of impurity atoms or dopants into a s...
This thesis investigates the properties of bismuth (Bi) nanostructures on a fundamental level and in...
Quantum confinement in a semimetal thin film such as bismuth (Bi) can lead to a semimetal-to-semicon...
The structure of thin terminated Bi(1 1 1) films of approximately 1nm thickness is investigated from...
Low temperature electronic transport properties have been studied in thin bismuth films with an emph...
Quantum confinement of itinerant electrons in atomically smooth ultrathin lead films produces strong...
Epitaxial Bi(111) films were subject to many and partly even controversial studies on the semimetal-...
Bismuth (Bi) and Bismuth-Antimony (Bi [subscript 1-x] Sb [subscript x]) alloys are considered very p...
Semiconductors based on bismuth halides have gained attention for a wide range of electronic applica...
We have fabricated and studied bismuth quantum dot devices, which consist of a bismuth ball of $\sim...
We have observed new phenomena in low-temperature transport measurements of a small ball of bismuth ...
We report an investigation of the low-temperature electrical transport properties of bismuth films u...
We report on fabrication of a two-dimensional topological insulator-Bi(111) bilayer on Sb nanofilms ...
Ferromagnetic thin-film structures separated by ultrathin dielectrics on the order of few nanometers...
Our era is defined by its technology, and our future is dependent on its continued evolution. Over t...