Device-independent quantum key distribution with random postselection
arXiv:2110.02701 · doi:10.1103/PhysRevLett.128.110506
Abstract
Device-independent quantum key distribution (QKD) can permit the superior security even with unknown devices. In practice, however, the realization of device-independent QKD is technically challenging because of its low noise tolerance. In photonic setup, due to the limited detection efficiency, a large amount of the data generates from no-detection events which contain little correlations but contribute high errors. Here we propose the device-independent QKD protocol with random post selection, where the secret keys are extracted only from the post-selected subset of outcomes. This could not open the detection loophole as long as the entropy of the post-selected subset is evaluated from the information of the entire set of data, including both detection and no-detection events. This post selection has the advantage to significantly reduce the error events, thus relaxing the threshold of required detection efficiency. In the model of collective attacks, our protocol can tolerate detector efficiency as low as 68.5%, which goes beyond standard security proofs. The results make a concrete step for the implementation of device-independent QKD in practice.
An experimental demonstration of the protocol can be seen in arXiv:2110.01480
References in corpus (13)
- Device-independent security of quantum cryptography against collective attacks
- Hacking commercial quantum cryptography systems by tailored bright illumination
- Distillation of secret key and entanglement from quantum states
- A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations
- Device-independent quantum key distribution secure against collective attacks
- Bounding the set of quantum correlations
- Secure device-independent quantum key distribution with causally independent measurement devices
- Device-Independent Quantum Key Distribution with Random Key Basis
- Noisy pre-processing facilitating a photonic realisation of device-independent quantum key distribution
- Device-independent quantum key distribution with asymmetric CHSH inequalities
- Computing conditional entropies for quantum correlations
- Device-independent quantum key distribution from generalized CHSH inequalities
- Device-independent quantum key distribution based on Bell inequalities with more than two inputs and two outputs
Cited by in corpus (24)
- Experimental device-independent quantum key distribution between distant users
- Advances in device-independent quantum key distribution
- Photonic verification of device-independent quantum key distribution against collective attacks
- Experimental quantum secret sharing based on phase encoding of coherent states
- Security of device-independent quantum key distribution protocols: a review
- Semidefinite programming relaxations for quantum correlations
- Improved DIQKD protocols with finite-size analysis
- Device-independent quantum secret sharing with noise preprocessing and postselection
- Quantum Correlations in the Minimal Scenario
- Mode-pairing quantum key distribution with advantage distillation
- Device-Independent Quantum Key Distribution Based on the Mermin-Peres Magic Square Game
- Vacuum Beam Guide for Large-Scale Quantum Networks
- Device-Independent Quantum Secure Direct Communication Under Non-Markovian Quantum Channels
- Experimental study of secure quantum key distribution with source and detection imperfections
- Quantum Protocol for Decision Making and Verifying Truthfulness among -quantum Parties: Solution and Extension of the Quantum Coin Flipping Game
- Asymmetric mode-pairing quantum key distribution
- Multipartite quantum cryptography based on the violation of Svetlichny's inequality
- Experimental demonstration of improved reference-frame-independent quantum key distribution over 175km
- Upper bounds on key rates in device-independent quantum key distribution based on convex-combination attacks
- Towards efficient and secure quantum-classical communication networks
- Necessary and Sufficient Condition for Randomness Certification from Incompatibility
- Quantum Chernoff divergence in advantage distillation for quantum key distribution and device-independent quantum key distribution
- Long-Distance Device-Independent Conference Key Agreement
- How Likely Are You to Observe Non-locality with Imperfect Detection Efficiency and Random Measurement Settings?