Molecular nanostructures are promising building blocks for future quantum technologies, provided methods of harnessing their multiple degrees of freedom can be identified and implemented. Due to low decoherence rates, nuclear spins are considered ideal candidates for storing quantum information, while optical excitations can give rise to fast and controllable interactions for information processing. A recent paper [M. Schaffry et al., Phys. Rev. Lett. 104, 200501 (2010)] proposed a method for entangling two nuclear spins through their mutual coupling to a transient optically excited electron spin. Building on the same idea, we present here an extended and much more detailed theoretical framework, showing that this method is in fact applicab...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Molecular nanostructures are promising building blocks for future quantum technologies, provided met...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
This work was supported by the Marie Curie Early Stage Training network QIPEST (MESTCT-2005-020505),...
This work was supported by the Marie Curie Early Stage Training network QIPEST (MESTCT-2005-020505),...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Entanglement is one of the most technologically important quantum phenomena and its con- trolled cre...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...
Molecular nanostructures are promising building blocks for future quantum technologies, provided met...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
This work was supported by the Marie Curie Early Stage Training network QIPEST (MESTCT-2005-020505),...
This work was supported by the Marie Curie Early Stage Training network QIPEST (MESTCT-2005-020505),...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Entanglement is one of the most technologically important quantum phenomena and its con- trolled cre...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Nanostructures are promising building blocks for quantum technologies due to their reproducible natu...