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