activity
20142024
most citedLocal Unitary Equivalence of Multi-qubit Mixed quantum States

26 citations · 35 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph2024

Dynamics of quantum battery capacity under Markovian channels

Yao-Kun Wang, Li-Zhu Ge, Tinggui Zhang +2

We study the dynamics of the quantum battery capacity for the Bell-diagonal states under Markovian channels on the first subsystem. We show that the capacity increases for special…

quant-ph20242 cited

A unifying separability criterion based on extended correlation tensor

Xiaofen Huang, Tinggui Zhang, Naihuan Jing

Entanglement is fundamental inasmuch because it rephrases the quest for the classical-quantum demarcation line, and it also has potentially enormous practical applications in moder…

quant-ph2024

Sharing Bell nonlocality of bipartite high-dimensional pure states using only projective measurements

Tinggui Zhang, Hong Yang, Shao-Ming Fei

Bell nonlocality is the key quantum resource in some device-independent quantum information processing. It is of great importance to study the efficient sharing of this resource. U…

physics.optics2023

Unidirectional Photonic Reflector Using a Defective Atomic Lattice

Tianming Li, Hong Yang, Maohua Wang +3

Based on the broken spatial symmetry, we propose a novel scheme for engineering a unidirectional photonic reflector using a one-dimensional atomic lattice with defective cells that…

quant-ph20223 cited

Separability criteria based on the Weyl operators

Xiaofen Huang, Tinggui Zhang, Ming-Jing Zhao +1

Entanglement as a vital resource for information processing can be described by special properties of the quantum state. Using the well-known Weyl basis we propose a new Bloch deco…

quant-ph20166 cited

A Note on Local Unitary Equivalence of Isotropic-like States

Tinggui Zhang, Bobo Hua, Ming Li +2

We consider the local unitary equivalence of a class of quantum states in bipartite case and multipartite case. The necessary and sufficient condition is presented. As special case…