Quantum cryptography harnesses quantum light, in particular single photons, to provide security guarantees that cannot be reached by classical means. For each cryptographic task, the security feature of interest is directly related to the photons' non-classical properties. Quantum dot-based single-photon sources are remarkable candidates, as they can in principle emit deterministically, with high brightness and low multiphoton contribution. Here, we show that these sources provide additional security benefits, thanks to the tunability of coherence in the emitted photon-number states. Generating either mixed or coherent states of light allows for enhanced performance of many quantum cryptography applications. We identify the optimal optical ...
The last two decades has seen a revolution in how information is stored and transmitted across the ...
The paper analyzes security aspects of practical entanglement-based quantum key distribution (QKD), ...
A single photon source (SPS) is very important for quantum computation. In particular, it is essenti...
4 pages, 3 figuresInternational audienceWe report the full implementation of a quantum cryptography ...
We experimentally demonstrate that a single-photon detector ID210 commercially available from ID Qua...
Here we present two new schemes for quantum key distribution (QKD) which neither require entanglemen...
Building a quantum internet requires efficient and reliable quantum hardware, from photonic sources ...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
We report on in-lab free space quantum key distribution (QKD) experiments over 40 cm distance using ...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
We present an active anti-latching system for superconducting nanowire single-photon detectors. We e...
Current quantum cryptography systems are limited by the attenuated coherent pulses they use as light...
Top-performance sources of photonic entanglement are an indispensable resource for many applications...
Quantum key distribution with solid-state single-photon emitters is gaining traction due to their ra...
In this paper, we employ theoretical and experimental efforts and realize a proof-of-principle verif...
The last two decades has seen a revolution in how information is stored and transmitted across the ...
The paper analyzes security aspects of practical entanglement-based quantum key distribution (QKD), ...
A single photon source (SPS) is very important for quantum computation. In particular, it is essenti...
4 pages, 3 figuresInternational audienceWe report the full implementation of a quantum cryptography ...
We experimentally demonstrate that a single-photon detector ID210 commercially available from ID Qua...
Here we present two new schemes for quantum key distribution (QKD) which neither require entanglemen...
Building a quantum internet requires efficient and reliable quantum hardware, from photonic sources ...
Photonic quantum technology provides a viable route to quantum communication, quantum simulation, an...
We report on in-lab free space quantum key distribution (QKD) experiments over 40 cm distance using ...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
We present an active anti-latching system for superconducting nanowire single-photon detectors. We e...
Current quantum cryptography systems are limited by the attenuated coherent pulses they use as light...
Top-performance sources of photonic entanglement are an indispensable resource for many applications...
Quantum key distribution with solid-state single-photon emitters is gaining traction due to their ra...
In this paper, we employ theoretical and experimental efforts and realize a proof-of-principle verif...
The last two decades has seen a revolution in how information is stored and transmitted across the ...
The paper analyzes security aspects of practical entanglement-based quantum key distribution (QKD), ...
A single photon source (SPS) is very important for quantum computation. In particular, it is essenti...