We describe the exploitation of narrow linewidth lasers and coherent laser interferometry techniques originally developed in the atomic clocks community to improve the performances of twin-field quantum key distribution protocols in real-world, long-distance fiber networks
In this thesis I describe three independent projects that advance the development of broadband quant...
Quantum key distribution (QKD) enables the creation of a common secret key between two remote partie...
Twin-field (TF) quantum key distribution (QKD) can overcome fundamental secret-key-rate bounds on po...
Quantum mechanics allows distribution of intrinsically secure encryption keys by optical means. Twin...
We investigate the impact of noise sources in real-world implementations of Twin-Field Quantum Key D...
We demonstrate the feasibility of a network-oriented Quantum Key Distribution (QKD) from affordable ...
This feature issue presents a collection of recent theoretical and experimental developments in the ...
Twin-field (TF) quantum key distribution (QKD) fundamentally alters the rate-distance relationship o...
Quantum key distribution (QKD) provides secure keys resistant to code-breaking quantum computers. Th...
Around 40 years have passed since the first pioneering works introduced the possibility of using qua...
Quantum Key Distribution allows two distant users to establish a common secret string of bits by sen...
With the help of quantum key distribution (QKD), two distant peers are able to share information-the...
Quantum communications promise to provide information theoretic security in the exchange of informat...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
Time-bin encoding is an attractive method for transmitting photonic qubits over long distances with ...
In this thesis I describe three independent projects that advance the development of broadband quant...
Quantum key distribution (QKD) enables the creation of a common secret key between two remote partie...
Twin-field (TF) quantum key distribution (QKD) can overcome fundamental secret-key-rate bounds on po...
Quantum mechanics allows distribution of intrinsically secure encryption keys by optical means. Twin...
We investigate the impact of noise sources in real-world implementations of Twin-Field Quantum Key D...
We demonstrate the feasibility of a network-oriented Quantum Key Distribution (QKD) from affordable ...
This feature issue presents a collection of recent theoretical and experimental developments in the ...
Twin-field (TF) quantum key distribution (QKD) fundamentally alters the rate-distance relationship o...
Quantum key distribution (QKD) provides secure keys resistant to code-breaking quantum computers. Th...
Around 40 years have passed since the first pioneering works introduced the possibility of using qua...
Quantum Key Distribution allows two distant users to establish a common secret string of bits by sen...
With the help of quantum key distribution (QKD), two distant peers are able to share information-the...
Quantum communications promise to provide information theoretic security in the exchange of informat...
Elementary building blocks for quantum repeaters based on fiber channels and memory stations are ana...
Time-bin encoding is an attractive method for transmitting photonic qubits over long distances with ...
In this thesis I describe three independent projects that advance the development of broadband quant...
Quantum key distribution (QKD) enables the creation of a common secret key between two remote partie...
Twin-field (TF) quantum key distribution (QKD) can overcome fundamental secret-key-rate bounds on po...