By using a covert classical communication channel for error reconciliation in QKD systems, higher SKRs are capable of being achieved. Assuming transmission over a 30km maritime channel, our previous results for the selection of optimum wavelength for use are re-examined.ONR MURI program [N00014-13-1-0627]This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu
To implement the BB84 decoy-state quantum key distribution (QKD) protocol over a lossy ground-satell...
We present an entangled-state quantum cryptography system that operated for the first time in a real...
We have implemented a quantum key distribution (QKD) system with polarization encoding at 850 nm ove...
The information that is leaked to an eavesdropper during the error reconciliation phase of quantum k...
Due to the absorption of water, communication between two parties submersed below the water is norma...
Quantum entanglement is one of the most extraordinary effects in quantum physics, with many applicat...
Quantum key distribution (QKD) allows two remote parties to generate secret keys for cryptographic p...
We develop a model for practical, entanglement-based long-distance quantum key distribution employin...
International audienceQuantum Key distribution (QKD) enables two parties, Alice and Bob, to share a ...
Quantum key distribution (QKD) generates symmetric keys between two remote parties and guarantees th...
Due to the absorption of water, communication between two parties submersed below the water is norma...
The secure distribution of the secret random bit sequences known as key material, is an essential pr...
Wavelength-division multiplexing of quantum and classical channels is a necessary requirement for th...
A detailed analysis of quantum key distribution employing entangled states is presented. We tested a...
We devise a simple modification that essentially doubles the efficiency of a well-known quantum key ...
To implement the BB84 decoy-state quantum key distribution (QKD) protocol over a lossy ground-satell...
We present an entangled-state quantum cryptography system that operated for the first time in a real...
We have implemented a quantum key distribution (QKD) system with polarization encoding at 850 nm ove...
The information that is leaked to an eavesdropper during the error reconciliation phase of quantum k...
Due to the absorption of water, communication between two parties submersed below the water is norma...
Quantum entanglement is one of the most extraordinary effects in quantum physics, with many applicat...
Quantum key distribution (QKD) allows two remote parties to generate secret keys for cryptographic p...
We develop a model for practical, entanglement-based long-distance quantum key distribution employin...
International audienceQuantum Key distribution (QKD) enables two parties, Alice and Bob, to share a ...
Quantum key distribution (QKD) generates symmetric keys between two remote parties and guarantees th...
Due to the absorption of water, communication between two parties submersed below the water is norma...
The secure distribution of the secret random bit sequences known as key material, is an essential pr...
Wavelength-division multiplexing of quantum and classical channels is a necessary requirement for th...
A detailed analysis of quantum key distribution employing entangled states is presented. We tested a...
We devise a simple modification that essentially doubles the efficiency of a well-known quantum key ...
To implement the BB84 decoy-state quantum key distribution (QKD) protocol over a lossy ground-satell...
We present an entangled-state quantum cryptography system that operated for the first time in a real...
We have implemented a quantum key distribution (QKD) system with polarization encoding at 850 nm ove...