Controlling molecular spin quantum bits optically offers the potential to effectively reduce decoherence and raise the working temperature of quantum computers. Here, exchange interactions and spin dynamics, as mediated by an optically driven triplet state, are calculated for a molecule that consists of a pair of radicals and represents a potential quantum-circuit building block. Consistent with the previous experimental observation of spin coherence induced by the triplet state, our work demonstrates an optically driven quantum gate operation scheme in a molecule. A technological blueprint combining a two-dimensional molecular network and programmable nanophotonics, both of which are sufficiently developed, is proposed. We thus realize com...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Use of molecular electron spins as qubits for quantum computing will depend on the ability to produc...
Proposals for systems embodying condensed matter spin qubits cover a very wide range of length scale...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
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),...
Resumen del trabajo presentado al Simposio Internacional de Tecnologías Cuánticas (International Sym...
Molecular nanostructures are promising building blocks for future quantum technologies, provided met...
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 ...
Spins in solids or in molecules possess discrete energy levels, and the associated quantum states ca...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Molecules present a versatile platform for quantum information science1,2 and are candidates for sen...
Recent studies in self-assembled InAs quantum dots (QDs) for applications in quantum information pro...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Use of molecular electron spins as qubits for quantum computing will depend on the ability to produc...
Proposals for systems embodying condensed matter spin qubits cover a very wide range of length scale...
Funding: Marie Curie Early Stage Training network QIPEST (Grant No. MESTCT-2005-020505), the EPSRC t...
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),...
Resumen del trabajo presentado al Simposio Internacional de Tecnologías Cuánticas (International Sym...
Molecular nanostructures are promising building blocks for future quantum technologies, provided met...
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 ...
Spins in solids or in molecules possess discrete energy levels, and the associated quantum states ca...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Molecules present a versatile platform for quantum information science1,2 and are candidates for sen...
Recent studies in self-assembled InAs quantum dots (QDs) for applications in quantum information pro...
Molecular nanostructures may constitute the fabric of future quantum technologies, if their degrees ...
Use of molecular electron spins as qubits for quantum computing will depend on the ability to produc...
Proposals for systems embodying condensed matter spin qubits cover a very wide range of length scale...