Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-$\mu$m waveband is a promising candidate for daylight quantum communication. This spectral region also offers low losses and low dispersion in hollow-core fibers and in silicon waveguides. We demonstrate for the first time near-maximally entangled photon pairs at 2.1 $\mu$m that could support device independent quantum key distribution (DIQKD) assuming sufficiently high channel efficiencies. The state corresponds to a positive secure-key rate (0.254 bits/pair, with a quantum bit error rate of 3.8%) based on measurements in a laboratory setting with minimal channel loss and transmission distance. This is promising for the future implementation of ...
International audienceQuantum Key distribution (QKD) enables two parties, Alice and Bob, to share a ...
Besides being a beautiful idea, device-independent quantum key distribution (DIQKD) is probably the ...
The channel loss incurred in long-distance transmission places a significant burden on quantum key d...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-μm w...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-mu m...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-mu m...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-μm w...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Conventional quantum key distribution (QKD) typically uses binary encoding based on photon polarizat...
<p>Quantum cryptography with entangled photon pairs can be more powerful than protocols based onsing...
International audienceQuantum Key distribution (QKD) enables two parties, Alice and Bob, to share a ...
Besides being a beautiful idea, device-independent quantum key distribution (DIQKD) is probably the ...
The channel loss incurred in long-distance transmission places a significant burden on quantum key d...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-μm w...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-mu m...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-mu m...
Owing to a reduced solar background and low propagation losses in the atmosphere, the 2- to 2.5-μm w...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Quantum-enhanced optical systems operating within the 2- to 2.5-μm spectral region have the potentia...
Conventional quantum key distribution (QKD) typically uses binary encoding based on photon polarizat...
<p>Quantum cryptography with entangled photon pairs can be more powerful than protocols based onsing...
International audienceQuantum Key distribution (QKD) enables two parties, Alice and Bob, to share a ...
Besides being a beautiful idea, device-independent quantum key distribution (DIQKD) is probably the ...
The channel loss incurred in long-distance transmission places a significant burden on quantum key d...