most citedVerification of Bell Nonlocality by Violating Quantum Monogamy Relations

6 citations · 12 across the 6 of their papers we have counts for

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quant-ph2024

Classifying multiparticle entanglement with passive state energies

Xue Yang, Yan-Han Yang, Xin-Zhu Liu +2

Thermodynamics as a fundamental branch of physics examines the relationships between heat, work, and energy. The maximum energy extraction can be characterized by using the passive…

quant-ph2024

Quantumness Speeds up Quantum Thermodynamics Processes

Ming-Xing Luo

Quantum thermodynamic process involves manipulating and controlling quantum states to extract energy or perform computational tasks with high efficiency. There is still no efficien…

quant-ph2024

Multiparticle entanglement classification with ergotropic gap

Xue Yang, Yan-Han Yang, Shao-Ming Fei +1

The presence of quantum multipartite entanglement implies the existence of a thermodynamic quantity known as the ergotropic gap, which is defined as the difference between the maxi…

quant-ph20245 cited

Device-independent Verification of Quantum Coherence without Quantum Control

Yan-Han Yang, Xue Yang, Xing-Zhou Zheng +1

Quantum coherence plays a crucial role in manipulating and controlling quantum systems, leading to breakthroughs in various fields such as quantum information, quantum sensing, and…

quant-ph20246 cited

Verification of Bell Nonlocality by Violating Quantum Monogamy Relations

Yan-Han Yang, Xin-Zhu Liu, Xing-Zhou Zheng +2

Quantum nonlocality as a witness of entanglement plays a crucial role in various fields. Existing quantum monogamy relations rule out the possibility of simultaneous violations of…

quant-ph20231 cited

Provable learning of quantum states with graphical models

Liming Zhao, Naixu Guo, Ming-Xing Luo +1

The complete learning of an -qubit quantum state requires samples exponentially in . Several works consider subclasses of quantum states that can be learned in polynomial sam…