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20162024
most citedExperimental measurement-device-independent quantum random number generation

77 citations · 79 across the 6 of their papers we have counts for

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quant-ph2024

Continuous-Variable Source-Independent Quantum Random Number Generator with a Single Phase-Insensitive Detector

Hongyi Zhou

Quantum random number generators (QRNGs) harness quantum mechanical unpredictability to produce true randomness, which is crucial for cryptography and secure communications. Among…

quant-ph2024

Error mitigated shadow estimation based on virtual distillation

Ruyu Yang, Xiaoming Sun, Hongyi Zhou

Shadow estimation is a method for deducing numerous properties of an unknown quantum state through a limited set of measurements, which suffers from noises in quantum devices. In t…

quant-ph2024

Real-Time Seedless Post-Processing for Quantum Random Number Generators

Qian Li, Hongyi Zhou

Quantum-proof randomness extraction is essential for handling quantum side information possessed by a quantum adversary, which is widely applied in various quantum cryptography tas…

quant-ph2023

A hybrid algorithm for quadratically constrained quadratic optimization problems

Hongyi Zhou, Sirui Peng, Qian Li +1

Quadratically Constrained Quadratic Programs (QCQPs) are an important class of optimization problems with diverse real-world applications. In this work, we propose a variational qu…

quant-ph2023

Numerical Security Analysis of Three-State Quantum Key Distribution Protocol with Realistic Devices

Sirui Peng, Xiaoming Sun, Hongyi Zhou

Quantum key distribution (QKD) is a secure communication method that utilizes the principles of quantum mechanics to establish secret keys. The central task in the study of QKD is…

quant-ph201677 cited

Experimental measurement-device-independent quantum random number generation

You-Qi Nie, Jian-Yu Guan, Hongyi Zhou +4

The randomness from a quantum random number generator (QRNG) relies on the accurate characterization of its devices. However, device imperfections and inaccurate characterizations…