The effect of scintillation, arising from propagation through atmospheric turbulence, on the sift and error probabilities of a quantum key distribution (QKD) system that uses the weak-laser-pulse version of the Bennett-Brassard 1984 (BB84) protocol is evaluated. Two earth-space scenarios are examined: satellite-to-ground and ground-to-satellite transmission. Both lie in the far-field power-transfer regime. This work complements previous analysis of turbulence effects in near-field terrestrial BB84 QKD [ J. H. Shapiro Phys. Rev. A 67 022309 (2003)]. More importantly, it shows that scintillation has virtually no impact on the sift and error probabilities in earth-space BB84 QKD, something that has been implicitly assumed in prior analyses for...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...
Satellite-mediated quantum key distribution (QKD) is set to become a critical technology for quantum...
Abstract. The statistical fluctuations in free-space links in the turbulent atmosphere are important...
The statistical fluctuations in free-space links in the turbulent atmosphere are important for the d...
A new decoy state method has been presented to tighten the lower bound of the key generation rate fo...
In this paper, we present a novel analysis of the feasibility of quantum key distribution between a ...
Laser communication systems offer several advantages over conventional radio frequency (RF) systems ...
Quantum key distribution (QKD) has the potential to improve communications security by offering cryp...
Free space quantum communication assumes importance as it is a precursor for satellite-based quantum...
Atmospheric turbulence has the potential to disrupt quantum communication. Therefore, it is importan...
Since the invention of the laser in the 60s, one of the most fundamental communication channels has ...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
The unconditional security in the creation of cryptographic keys obtained by quantum key distributio...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...
Satellite-mediated quantum key distribution (QKD) is set to become a critical technology for quantum...
Abstract. The statistical fluctuations in free-space links in the turbulent atmosphere are important...
The statistical fluctuations in free-space links in the turbulent atmosphere are important for the d...
A new decoy state method has been presented to tighten the lower bound of the key generation rate fo...
In this paper, we present a novel analysis of the feasibility of quantum key distribution between a ...
Laser communication systems offer several advantages over conventional radio frequency (RF) systems ...
Quantum key distribution (QKD) has the potential to improve communications security by offering cryp...
Free space quantum communication assumes importance as it is a precursor for satellite-based quantum...
Atmospheric turbulence has the potential to disrupt quantum communication. Therefore, it is importan...
Since the invention of the laser in the 60s, one of the most fundamental communication channels has ...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
The unconditional security in the creation of cryptographic keys obtained by quantum key distributio...
Optical quantum communication exploiting satellites is the most promising field to enable global qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...
Global-scale quantum communication networks will require efficient long-distance distribution of qua...