Nanostructures are promising building blocks for quantum technologies due to their reproducible nature and ability to self-assemble into complex structures. However, the need to control these nanostructures represents a key challenge. Hence, this thesis investigates the manipulation and creation of quantum states in certain nanostructures. The results of this thesis can be applied to quantum information processing and to extremely sensitive magnetic-field measurements. In the first research chapter, we propose and examine methods for entangling two (remote) nuclear spins through their mutual coupling to a transient optically excited electron spin. From our calculations we identify the specific molecular properties that permit high entanglin...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
The performance of solid-state quantum sensors based on electronic spin defects is often limited by ...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
Molecular magnets have been demonstrated to be promising candidates for quantum-coherent nanodevices...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Molecular spins have shown genuine quantum properties, both as collections of independent units and ...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Isolated optically-active solid-state spins such as the Nitrogen-Vacancy (NV) center in diamond have...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
The performance of solid-state quantum sensors based on electronic spin defects is often limited by ...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
Molecular magnets have been demonstrated to be promising candidates for quantum-coherent nanodevices...
Quantum entangled states can be very delicate and easily perturbed by their external environment. Th...
The highly parallel nature of the fundamental principles of quantum mechanics means that certain key...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...
Molecular spins have shown genuine quantum properties, both as collections of independent units and ...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Isolated optically-active solid-state spins such as the Nitrogen-Vacancy (NV) center in diamond have...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
The performance of solid-state quantum sensors based on electronic spin defects is often limited by ...
We review the implementation of quantum information processing using quantum spins and pulsed spin r...