Efficient room-temperature molecular single-photon sources for quantum key distribution
Ghulam Murtaza, Maja Colautti, Michael Hilke, Pietro Lombardi, F. S. Cataliotti, Alessandro Zavatta, Davide Bacco, Costanza Toninelli
Abstract
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Ghulam Murtaza, Maja Colautti, Michael Hilke, Pietro Lombardi, F. S. Cataliotti, Alessandro Zavatta, Davide Bacco, Costanza Toninelli
Abstract
Open-access reader
Quantum Key Distribution (QKD) allows the distribution of cryptographic keys between multiple users in an information-theoretic secure way, exploiting quantum physics. While current QKD systems are mainly based on attenuated laser pulses, deterministic single-photon sources could give concrete advantages in terms of secret key rate (SKR) and security owing to the negligible probability of multi-photon events. Here, we introduce and demonstrate a proof-of-concept QKD system exploiting a molecule-based single-photon source operating at room temperature and emitting at 785nm. With an estimated SKR of 0.5 Mbps, our solution paves the way for room-temperature single-photon sources for quantum communication protocols.
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Quantum Key Distribution (QKD) allows the distribution of cryptographic keys between multiple users in an information-theoretic secure way, exploiting quantum physics. While current QKD systems are mainly based on attenuated laser pulses, deterministic single-photon sources could give concrete advantages in terms of secret key rate (SKR) and security owing to the negligible probability of multi-photon events. Here, we introduce and demonstrate a proof-of-concept QKD system exploiting a molecule-based single-photon source operating at room temperature and emitting at 785nm. With an estimated SKR of 0.5 Mbps, our solution paves the way for room-temperature single-photon sources for quantum communication protocols.
Key concepts: Quantum key distribution, Quantum cryptography, Photon, Key (lock), Quantum information science, Key distribution, Computer science, Cryptography