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quant-ph2019

Experimental Optimal Verification of Entangled States using Local Measurements

Wen-Hao Zhang, Zhe Chen, Xing-Xiang Peng +7

The initialization of a quantum system into a certain state is a crucial aspect of quantum information science. While a variety of measurement strategies have been developed to cha…

quant-ph2018

Experimental Simultaneous Learning of Multiple Non-Classical Correlations

Mu Yang, Chang-liang Ren, Yue-chi Ma +7

Non-classical correlations can be regarded as resources for quantum information processing. However, the classification problem of non-classical correlations for quantum states rem…

quant-ph2018

Mapping Criteria of Nonlocality-Steerability in Qudit-Qubit Systems and Steerability-Entanglement in Qubit-Qudit Systems

Changbo Chen, Changliang Ren, Xiang-Jun Ye +1

Entanglement, quantum steering and nonlocality are distinct quantum correlations which are the resources behind various of quantum information and quantum computation applications.…

quant-ph2018

Experimentally Robust Self-testing for Bipartite and Tripartite Entangled States

Wen-Hao Zhang, Geng Chen, Xing-Xiang Peng +9

Self-testing refers to a method with which a classical user can certify the state and measurements of quantum systems in a device-independent way. Especially, the self-testing of e…

quant-ph2018

Experimental self-testing of entangled states

Wen-Hao Zhang, Geng Chen, Xing-Xiang Peng +12

Quantum entanglement is the key resource for quantum information processing. Device-independent certification of entangled states is a long standing open question, which arouses th…

quant-ph2018

Demonstration of Einstein-Podolsky-Rosen Steering with Enhanced Subchannel Discrimination

Kai Sun, Xiang-Jun Ye, Ya Xiao +6

Einstein-Podolsky-Rosen (EPR) steering describes a quantum nonlocal phenomenon in which one party can nonlocally affect the other's state through local measurements. It reveals an…