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20182026
most citedSelf-testing of different entanglement resources via fixed measurement settings

5 citations · 7 across the 4 of their papers we have counts for

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6 papers · 1 filter

quant-ph2026

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State

Yunguang Han, Xin Kuang, Xingyuan Bu +1

The three-qubit CCZ state is the smallest rank-three hypergraph state and an elementary entangled magic resource. Its cubic phase is governed by generalized stabilizers that are no…

quant-ph20225 cited

Self-testing of different entanglement resources via fixed measurement settings

Xinhui Li, Yukun Wang, Yunguang Han +1

Self-testing, which refers to device independent characterization of the state and the measurement, enables the security of quantum information processing task certified independen…

quant-ph20222 cited

Robust one-sided self-testing of two-qubit states via quantum steering

Yukun Wang, Xinjian Liu, Shaoxuan Wang +2

Entangled two-qubit states are the core building blocks for constructing quantum communication networks. Their accurate verification is crucial to the functioning of the networks,…

quant-ph2019

Self-testing of symmetric three-qubit states

Xinhui Li, Yukun Wang, Yunguang Han +2

Self-testing refers to a device-independent way to uniquely identify the state and the measurement for uncharacterized quantum devices. The only information required comprises the…

quant-ph2019

Practical quantum key distribution with non-phase-randomized coherent states

Li Liu, Yukun Wang, Emilien Lavie +4

Quantum key distribution (QKD) based on coherent states is well known for its implementation simplicity, but it suffers from loss-dependent attacks based on optimal unambiguous sta…

quant-ph2018

Characterising the correlations of prepare-and-measure quantum networks

Yukun Wang, Ignatius William Primaatmaja, Emilien Lavie +2

Prepare-and-measure (P&M) quantum networks are the basic building blocks of quantum communication and cryptography. These networks crucially rely on non-orthogonal quantum encoding…