4 pages, 3 figuresInternational audienceWe report the full implementation of a quantum cryptography protocol using a stream of single photon pulses generated by a stable and efficient source operating at room temperature. The single photon pulses are emitted on demand by a single nitrogen-vacancy (NV) color center in a diamond nanocrystal. The quantum bit error rate is less that 4.6% and the secure bit rate is 9500 bits/s. The overall performances of our system reaches a domain where single photons have a measurable advantage over an equivalent system based on attenuated light pulses
The authors gratefully acknowledge expert sample preparation by M Emmerling and A Wolf as well as fi...
We demonstrate a quantum key distribution (QKD) testbed for room temperature single photon sources b...
Quantum light sources emitting triggered single photons or entangled photon pairs have the potential...
4 pages, 3 figuresInternational audienceWe report the full implementation of a quantum cryptography ...
Jury : Izo Abram (Rapporteur) Nicolas Gisin Jean-Pierre Goedgebuer (Predsident) Philippe Grangier Je...
Quantum information is a highly interesting and fast emerging field that involves processing informa...
We report on in-lab free space quantum key distribution (QKD) experiments over 40 cm distance using ...
This manuscript is divided in two independant parts. In the first part, we study the wave-particle d...
We report here a complete experimental realization of one-way decoy-pulse quantum key distribution, ...
Quantum cryptography harnesses quantum light, in particular single photons, to provide security guar...
8 pages, 5 figures, revised version, to appear in PRAInternational audienceThe quantum properties of...
A single photon source is an emitter that is able to produce light plses containing exactly one phot...
A new class of quantum cryptography (QC) protocols that are robust against the most general photon n...
To date, quantum communication widely relies on attenuated lasers for secret key generation. In futu...
This doctoral thesis summarizes research in quantum cryptography done at the Department of Electroni...
The authors gratefully acknowledge expert sample preparation by M Emmerling and A Wolf as well as fi...
We demonstrate a quantum key distribution (QKD) testbed for room temperature single photon sources b...
Quantum light sources emitting triggered single photons or entangled photon pairs have the potential...
4 pages, 3 figuresInternational audienceWe report the full implementation of a quantum cryptography ...
Jury : Izo Abram (Rapporteur) Nicolas Gisin Jean-Pierre Goedgebuer (Predsident) Philippe Grangier Je...
Quantum information is a highly interesting and fast emerging field that involves processing informa...
We report on in-lab free space quantum key distribution (QKD) experiments over 40 cm distance using ...
This manuscript is divided in two independant parts. In the first part, we study the wave-particle d...
We report here a complete experimental realization of one-way decoy-pulse quantum key distribution, ...
Quantum cryptography harnesses quantum light, in particular single photons, to provide security guar...
8 pages, 5 figures, revised version, to appear in PRAInternational audienceThe quantum properties of...
A single photon source is an emitter that is able to produce light plses containing exactly one phot...
A new class of quantum cryptography (QC) protocols that are robust against the most general photon n...
To date, quantum communication widely relies on attenuated lasers for secret key generation. In futu...
This doctoral thesis summarizes research in quantum cryptography done at the Department of Electroni...
The authors gratefully acknowledge expert sample preparation by M Emmerling and A Wolf as well as fi...
We demonstrate a quantum key distribution (QKD) testbed for room temperature single photon sources b...
Quantum light sources emitting triggered single photons or entangled photon pairs have the potential...