output
20022025
most citedConcurrence of arbitrary dimensional bipartite quantum states

321 citations

Showing 2025 · quant-phShow all

6 papers · 2 filters

quant-ph20254 cited

Quantifying coherence of quantum channels based on the generalized --relative Rényi entropy

Jiaorui Fan, Zhaoqi Wu, Shao-Ming Fei

By using the Choi-Jamiołkowski isomorphism, we propose a well-defined coherence measure of quantum channels based on the generalized --relative Rényi entropy. In addition, we…

quant-ph20251 cited

Photonic Energy-Coherence Theorem and Experimental Validations

Yan-Han Yang, Xin-Zhu Liu, Jun-Li Jiang +5

Wave-particle duality, intertwining two inherently contradictory properties of quantum systems, remains one of the most conceptually profound aspects of quantum mechanics. By using…

quant-ph2025

Monogamy and polygamy for multi-qudit generalized -class states based on concurrence of assistance and Tsallis- entanglement of assistance

Wen Zhou, Zhong-Xi Shen, Dong-Ping Xuan +2

By analyzing the reduced density matrices derived from a generalized -class state under any partition, we present new analytical monogamy inequalities satisfied by the -th ($…

quant-ph20257 cited

Detecting quantum steering in networks

Ming-Xiao Li, Yuqi Li, Ya Xi +5

Quantum networks promise an unprecedented leap in semi-device-independent communication and security by capitalizing on quantum steering. However, current methods for assessing qua…

quant-ph20253 cited

Quantifying Quantum Steering with Limited Resources: A Semi-supervised Machine Learning Approach

Yansa Lu, Zhihua Chen, Zhihao Ma +1

Quantum steering, an intermediate quantum correlation lying between entanglement and nonlocality, has emerged as a critical quantum resource for a variety of quantum information pr…

quant-ph20254 cited

Quantifying the imaginarity via different distance measures

Meng-Li Guo, Si-Yin Huang, Bo Li +1

The recently introduced resource theory of imaginarity facilitates a systematic investigation into the role of complex numbers in quantum mechanics and quantum information theory.…