High speed error correction for continuous-variable quantum key distribution with multi-edge type LDPC code
arXiv:1711.01783 · doi:10.1038/s41598-018-28703-4
Abstract
Error correction is a significant step in postprocessing of continuous-variable quantum key distribution system, which is used to make two distant legitimate parties share identical corrected keys. We propose an experiment demonstration of high speed error correction with multi-edge type low-density parity check (MET-LDPC) codes based on graphic processing unit (GPU). GPU supports to calculate the messages of MET-LDPC codes simultaneously and decode multiple codewords in parallel. We optimize the memory structure of parity check matrix and the belief propagation decoding algorithm to reduce computational complexity. Our results show that GPU-based decoding algorithm greatly improves the error correction speed. For the three typical code rate, i.e., 0.1, 0.05 and 0.02, when the block length is and the iteration number are 100, 150 and 200, the average error correction speed can be respectively achieved to 30.39Mbits/s (over three times faster than previous demonstrations), 21.23Mbits/s and 16.41Mbits/s with 64 codewords decoding in parallel, which supports high-speed real-time continuous-variable quantum key distribution system.
8 pages, 2 figures
References in corpus (6)
- Quantum key distribution over 25 km with an all-fiber continuous-variable system
- Multidimensional reconciliation for continuous-variable quantum key distribution
- High-speed Implementation of Length-compatible Privacy Amplification in Continuous-variable Quantum Key Distribution
- Key Reconciliation with Low-Density Parity-Check Codes for Long-Distance Quantum Cryptography
- High Bit Rate Continuous-Variable Quantum Key Distribution
- User-defined quantum key distribution
Cited by in corpus (23)
- Advances in Quantum Cryptography
- High-speed Implementation of Length-compatible Privacy Amplification in Continuous-variable Quantum Key Distribution
- Continuous-variable QKD over 50km commercial fiber
- Continuous-variable quantum key distribution system: past, present, and future
- Satellite Quantum Communications: Fundamental Bounds and Practical Security
- Continuous-Variable Quantum Key Distribution with Rateless Reconciliation Protocol
- Rate compatible reconciliation for continuous-variable quantum key distribution using Raptor-like LDPC codes
- Polarization attack on continuous-variable quantum key distribution
- Practical security of continuous-variable quantum key distribution with reduced optical attenuation
- Multi-edge-type LDPC code design with G-EXIT charts for continuous-variable quantum key distribution
- Improving parameter estimation of entropic uncertainty relation in continuous-variable quantum key distribution
- Optimised Multithreaded CV-QKD Reconciliation for Global Quantum Networks
- Zero-photon catalysis based eight-state discrete modulated measurement-device-independent continuous-variable quantum key distribution
- QOSST: A Highly-Modular Open Source Platform for Experimental Continuous-Variable Quantum Key Distribution
- Rotation Based Slice Error Correction Protocol for Continuous-variable Quantum Key Distribution and its Implementation with Polar Codes
- An introductory review of the theory of continuous-variable quantum key distribution: Fundamentals, protocols, and security
- Efficient Reconciliation of Continuous Variable Quantum Key Distribution with Multiplicatively Repeated Non-Binary LDPC Codes
- Realizing downstream access network using continuous-variable quantum key distribution
- High-speed Privacy Amplification Scheme using GMP in Quantum Key Distribution
- 100Mbps Reconciliation for Quantum Key Distribution Using a Single Graphics Processing Unit
- Continuous-Variable Quantum Key Distribution with Composable Security and Tight Error Correction Bound towards Constrained-Device Implementations
- High Efficiency Postprocessing for Continuous-variable Quantum Key Distribution: Using All Raw Keys for Parameter Estimation and Key Extraction
- Novel Reconciliation Protocol Based on Spinal Code for Continuous-variable Quantum Key Distribution