5 papers
Resource requirements for efficient quantum communication using all-photonic graph states generated from a few matter qubits
Paul Hilaire, Edwin Barnes, Sophia E. Economou
Quantum communication technologies show great promise for applications ranging from the secure transmission of secret messages to distributed quantum computing. Due to fiber losses…
Sequential generation of linear cluster states from a single photon emitter
D. Istrati, Y. Pilnyak, J. C. Loredo +14
Light states composed of multiple entangled photons - such as cluster states - are essential for developing and scaling-up quantum computing networks. Photonic cluster states with…
Deterministic assembly of a charged quantum dot-micropillar cavity device
P. Hilaire, C. Millet, J. C. Loredo +7
Developing future quantum communication may rely on the ability to engineer cavity-mediated interactions between photons and solid-state artificial atoms, in a deterministic way. H…
Generation of non-classical light in a photon-number superposition
J. C. Loredo, C. Antón, B. Reznychenko +12
The ability to generate light in a pure quantum state is essential for advances in optical quantum technologies. However, obtaining quantum states with control in the photon-number…
Accurate measurement of a 96% input coupling into a cavity using polarization tomography
P. Hilaire, C. Antón, C. Kessler +4
Pillar microcavities are excellent light-matter interfaces providing an electromagnetic confinement in small mode volumes with high quality factors. They also allow the efficient i…