InAs quantum dots (QDs) can be used as optically coupled quantum storage devices for quantum information applications. The QD can be charged with a single electron, where the spin state (up or down) provides a long lived quantum bit (qubit). The QD's optically excited states are used to initialize, manipulate, and read out the electron spin state with laser pulses. However, most practical quantum information applications require many interacting qubits, forming a quantum network. Since QDs are based on semiconductor technology, and are compatible with standard nano-fabrication processing, there is promise that they can provide a solid state platform where a scalable quantum information architecture is realizable. We focus on scaling the QD ...
Indium gallium arsenide self-assembled quantum dots have attracted a lot of attention due to their a...
Recent studies in self-assembled InAs quantum dots (QDs) for applications in quantum information pro...
We review the progress and main challenges in implementing large-scale quantum computing by optical ...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
In this thesis, we will discuss results on quantum optical measurements in InAs self-assembled quant...
Semiconductor quantum dots can be used as sources of entangled single photons, which constitute a cr...
Self-assembled quantum dots (QDs) containing a single electron are one of the leading candidate syst...
Self-assembled quantum dots (QDs) containing a single electron are one of the leading candidate syst...
Optically driven self-assembled quantum dots are leading candidates for use in quantum computers bec...
Optically driven self-assembled quantum dots are leading candidates for use in quantum computers bec...
The quantum optoelectronic properties of semiconductor quantum dots (QDs) have featured prominently ...
The ability to store and transmit quantum information plays a central role in virtually all quantum ...
This book highlights the most recent developments in quantum dot spin physics and the generation of ...
The unconditional security of quantum networks and unparalleled acceleration of quantum algorithms e...
Inspired by recent developments in the control and manipulation of quantum dot nuclear spins, which ...
Indium gallium arsenide self-assembled quantum dots have attracted a lot of attention due to their a...
Recent studies in self-assembled InAs quantum dots (QDs) for applications in quantum information pro...
We review the progress and main challenges in implementing large-scale quantum computing by optical ...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
In this thesis, we will discuss results on quantum optical measurements in InAs self-assembled quant...
Semiconductor quantum dots can be used as sources of entangled single photons, which constitute a cr...
Self-assembled quantum dots (QDs) containing a single electron are one of the leading candidate syst...
Self-assembled quantum dots (QDs) containing a single electron are one of the leading candidate syst...
Optically driven self-assembled quantum dots are leading candidates for use in quantum computers bec...
Optically driven self-assembled quantum dots are leading candidates for use in quantum computers bec...
The quantum optoelectronic properties of semiconductor quantum dots (QDs) have featured prominently ...
The ability to store and transmit quantum information plays a central role in virtually all quantum ...
This book highlights the most recent developments in quantum dot spin physics and the generation of ...
The unconditional security of quantum networks and unparalleled acceleration of quantum algorithms e...
Inspired by recent developments in the control and manipulation of quantum dot nuclear spins, which ...
Indium gallium arsenide self-assembled quantum dots have attracted a lot of attention due to their a...
Recent studies in self-assembled InAs quantum dots (QDs) for applications in quantum information pro...
We review the progress and main challenges in implementing large-scale quantum computing by optical ...