Semiconducting nanowire heterostructures represent a new class of nanostructures that offer unprecedented freedom in material design. The position, diameter, composition and doping can be controlled with precision and complex structures such as core-shell and branched wires have already been demonstrated. Here we show that heterostructures in nanowires can define quantum emitters and that single spins can be addressed optically. We also present results on electrically contacted nanowires. The operation of single nanowires as light emitting diode or photodetector is demonstrated
Semiconductor nanowires are of interest as light emitters in applications such as light-emitting dio...
All-photonic integrated circuits are promising platforms for future systems beyond the limitation of...
We report reproducible fabrication of InP-InAsP nanowire light-emitting diodes in which electron-hol...
Semiconducting nanowire heterostructures represent a new class of nanostructures that offer unpreced...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
The catalyst-assisted growth of semiconductor nanowires heterostructures offers a very flexible way ...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
In this paper we present our recent developments in control and manipulation of individual spins and...
Semiconductor nanowires have made a deep impact on materials science related research, and are being...
This thesis explores the possibility of using advanced device geometries and heterostructure enginee...
Semiconductor nanowires have recently emerged as a new class of materials with significant potential...
Nanowires are structures with features on the nanoscale, and it is therefore essential to study thei...
We report on the optical properties of single quantum dots in nanowires probed along orthogonal dire...
At the core of quantum photonic information processing and sensing, two major building pillars are s...
Semiconductor nanowires are of interest as light emitters in applications such as light-emitting dio...
All-photonic integrated circuits are promising platforms for future systems beyond the limitation of...
We report reproducible fabrication of InP-InAsP nanowire light-emitting diodes in which electron-hol...
Semiconducting nanowire heterostructures represent a new class of nanostructures that offer unpreced...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
The catalyst-assisted growth of semiconductor nanowires heterostructures offers a very flexible way ...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
In this paper we present our recent developments in control and manipulation of individual spins and...
Semiconductor nanowires have made a deep impact on materials science related research, and are being...
This thesis explores the possibility of using advanced device geometries and heterostructure enginee...
Semiconductor nanowires have recently emerged as a new class of materials with significant potential...
Nanowires are structures with features on the nanoscale, and it is therefore essential to study thei...
We report on the optical properties of single quantum dots in nanowires probed along orthogonal dire...
At the core of quantum photonic information processing and sensing, two major building pillars are s...
Semiconductor nanowires are of interest as light emitters in applications such as light-emitting dio...
All-photonic integrated circuits are promising platforms for future systems beyond the limitation of...
We report reproducible fabrication of InP-InAsP nanowire light-emitting diodes in which electron-hol...