Robust implementation of quantum key distribution requires precise state generation and measurements, as well as the choice of an optimal encoding to minimize channel disturbance. Time-bin encoding represent a good candidate for fiber links as birefingence does not perturb this kind of states whereas stable and low-error encoders and decoders are available for polarization encoding. Here a cross-encoded scheme where high accuracy quantum states are prepared through a self-compensating, calibration-free polarization modulator and transmitted using a polarization-to-time-bin converter is presented. The receiver performs time-of-arrival measurements in the key-generation basis and converts qubits back to polarization encoding for measurements ...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...
We report experimental results and implementation of quantum key distribution (QKD) system which emp...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...
The time-bin quantum state is known to be highly robust against decoherence effects in both fiber-op...
This work deals with creation, manipulation and detection of quantum photon states, in one and two d...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
We have implemented a quantum key distribution (QKD) system with polarization encoding at 850 nm ove...
Noise and imperfection of realistic devices are major obstacles for implementing quantum cryptograph...
The encoding of quantum information in photonic time-bin qubits is apt for long distance quantum com...
Experimental polarization encoded quantum key distribution over optical fibres with real-time contin...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
We have implemented a practical plug-and-play measurement-device-independent quantum key distributio...
We present two polarization-based protocols for quantum key distribution. The protocols encode key b...
We present a scalable star-shaped quantum key distribution (QKD) optical fiber network. We use wavel...
Measurement-device-independent quantum key distribution (MDI-QKD) closes all the security loopholes ...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...
We report experimental results and implementation of quantum key distribution (QKD) system which emp...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...
The time-bin quantum state is known to be highly robust against decoherence effects in both fiber-op...
This work deals with creation, manipulation and detection of quantum photon states, in one and two d...
We present an experimental realization of a robust quantum communication scheme [Phys. Rev. Lett. 93...
We have implemented a quantum key distribution (QKD) system with polarization encoding at 850 nm ove...
Noise and imperfection of realistic devices are major obstacles for implementing quantum cryptograph...
The encoding of quantum information in photonic time-bin qubits is apt for long distance quantum com...
Experimental polarization encoded quantum key distribution over optical fibres with real-time contin...
A one-way quantum key distribution scheme based on intrinsically stable Faraday-mirror type Michelso...
We have implemented a practical plug-and-play measurement-device-independent quantum key distributio...
We present two polarization-based protocols for quantum key distribution. The protocols encode key b...
We present a scalable star-shaped quantum key distribution (QKD) optical fiber network. We use wavel...
Measurement-device-independent quantum key distribution (MDI-QKD) closes all the security loopholes ...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...
We report experimental results and implementation of quantum key distribution (QKD) system which emp...
We present an experimental demonstration of a quantum key distribution protocol using coherent polar...