In this work we analyze a quantum communication scheme for entanglement-based continuous variable quantum key distribution between two ground stations. Communication occurs via a satellite over two independent atmospheric fading channels dominated by turbulence-induced beam wander. In this scheme the engineering complexity remains largely on the ground transceivers, with the satellite acting simply as a reflector. We show how the use of a highly selective post-selection strategy may lead to a useful quantum key generation rate for this system. This work represents the first quantitative assessment of continuous variable quantum key rates in the pragmatic scenario of reflection off low-earth-orbit satellites
Abstract—We have analyzed the feasibility of performing Quantum Key Distribution (QKD), in earth-sat...
In this work there are studied the conditions for the effective quantum communications between a ter...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
In this work we analyze a quantum communication scheme for entanglement-based continuous variable qu...
This thesis analyses continuous-variable (CV) entanglement distribution over atmospheric-fading chan...
In this work we analyze a measurement-device-independent (MDI) protocol to establish continuous-vari...
Atmospheric turbulence has the potential to disrupt quantum communication. Therefore, it is importan...
In this work we analyze three quantum communication schemes for the generation of Gaussian entanglem...
10 pages, 12 figuresInternational audienceEstablishing secure communication links at a global scale ...
In this paper, we present a novel analysis of the feasibility of quantum key distribution between a ...
Establishing secure communication links at a global scale is a major potential application of quantu...
Transmittance fluctuations in turbulent atmospheric channels result in quadrature excess noise which...
Abstract. In this work there are studied the conditions for the effective quantum communications bet...
Global quantum communications will enable long-distance secure data transfer, networked distributed ...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
Abstract—We have analyzed the feasibility of performing Quantum Key Distribution (QKD), in earth-sat...
In this work there are studied the conditions for the effective quantum communications between a ter...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
In this work we analyze a quantum communication scheme for entanglement-based continuous variable qu...
This thesis analyses continuous-variable (CV) entanglement distribution over atmospheric-fading chan...
In this work we analyze a measurement-device-independent (MDI) protocol to establish continuous-vari...
Atmospheric turbulence has the potential to disrupt quantum communication. Therefore, it is importan...
In this work we analyze three quantum communication schemes for the generation of Gaussian entanglem...
10 pages, 12 figuresInternational audienceEstablishing secure communication links at a global scale ...
In this paper, we present a novel analysis of the feasibility of quantum key distribution between a ...
Establishing secure communication links at a global scale is a major potential application of quantu...
Transmittance fluctuations in turbulent atmospheric channels result in quadrature excess noise which...
Abstract. In this work there are studied the conditions for the effective quantum communications bet...
Global quantum communications will enable long-distance secure data transfer, networked distributed ...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
Abstract—We have analyzed the feasibility of performing Quantum Key Distribution (QKD), in earth-sat...
In this work there are studied the conditions for the effective quantum communications between a ter...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...