In order to deploy QKD in a cost effective and scalable way, its integration with already installed optical networks is a logical step. If, for the sake of security, we require that no intermediate trusted nodes would be needed, the maximum distance/absorptions allowed by QKD systems limit ourselves to metropolitan area networks. Current metro networks are mostly all optical and passive, hence a transparent link can be established among any two points and this link can be used to transport the quantum channel. In this poster we report on our findings studying the problems arising when integrating QKD systems in standard telecommunications networks
The coexistence of QKD and classical communication systems is described, identifying the principal l...
Quantum key distribution (QKD) provides an attractive means for securing communications in optical f...
There is a great attention to quantum technologies in the ICT environment. In particular, when deali...
To perform Quantum Key Distribution, the mastering of the extremely weak signals carried by the quan...
To perform Quantum Key Distribution, the mastering of the extremely weak signals carried by the quan...
Current QKD designs try to keep the quantum channel as error free as possible by using a separate ph...
The deployment of Quantum Key Distribution forces the development of QKD-links to be operated in cur...
Encrypted data transmission is becoming increasingly more important as information security is vital...
Quantum Key Distribution (QKD) is maturing quickly. However, the current approaches to its applicati...
Quantum Key Distribution (QKD) is currently receiving much attention as it provides a secure source ...
Quantum Key Distribution (QKD) is currently receiving much attention as it provides a secure source ...
Around 40 years have passed since the first pioneering works introduced the possibility of using qua...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
Quantum key distribution (QKD) provides an attractive means for securing communications in optical f...
There is a great attention to quantum technologies in the ICT environment. In particular, when deali...
To perform Quantum Key Distribution, the mastering of the extremely weak signals carried by the quan...
To perform Quantum Key Distribution, the mastering of the extremely weak signals carried by the quan...
Current QKD designs try to keep the quantum channel as error free as possible by using a separate ph...
The deployment of Quantum Key Distribution forces the development of QKD-links to be operated in cur...
Encrypted data transmission is becoming increasingly more important as information security is vital...
Quantum Key Distribution (QKD) is maturing quickly. However, the current approaches to its applicati...
Quantum Key Distribution (QKD) is currently receiving much attention as it provides a secure source ...
Quantum Key Distribution (QKD) is currently receiving much attention as it provides a secure source ...
Around 40 years have passed since the first pioneering works introduced the possibility of using qua...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
The coexistence of QKD and classical communication systems is described, identifying the principal l...
Quantum key distribution (QKD) provides an attractive means for securing communications in optical f...
There is a great attention to quantum technologies in the ICT environment. In particular, when deali...