7 papers
Manipulation of diverse quantum correlations based on a hybrid optomagnomechanical system
Xiaomin Liu, Rongguo Yang, Jing Zhang +1
Flexible manipulation of quantum correlation resources enables the implementation of diverse quantum tasks based on hybrid quantum networks, where atom-magnon and optomagnonic enta…
A Flexible GKP-State-Embedded Fault-Tolerant Quantum Computation Configuration Based on a Three-Dimensional Cluster State
Peilin Du, Jing Zhang, Tiancai Zhang +3
The integration of diverse quantum resources and the exploitation of more degrees of freedom provide key operational flexibility for universal fault-tolerant quantum computation. I…
Flexible manipulation of bipartite and multipartite EPR steerings
Yunyun Liang, Jing Zhang, Rongguo Yang +2
Bipartite and multipartite quantum steerings are significant resources for various quantum tasks, such as ultrasecure multi-user quantum network, one-site-trusted quantum communica…
Three-dimensional optical characterization of magnetostrictive deformation in magnomechanical systems
Xiaomin Liu, Jing Zhang, Jie Li +3
Magnomechanical systems with YIG spheres have been proven to be an ideal system for studying magnomechanically induced transparency, dynamical backaction, and rich nonlinear effect…
A complete continuous-variable quantum computation architecture based on the 2D spatiotemporal cluster state
Peilin Du, Jing Zhang, Tiancai Zhang +2
Continuous-variable measurement-based quantum computation, which requires deterministically generated large-scale cluster state, is a promising candidate for practical, scalable, u…
Flexible generation of optomagnonic quantum entanglement and quantum coherence difference in double-cavity-optomagnomechanical system
Xiaomin Liu, Rongguo Yang, Jing Zhang +1
Quantum entanglement and quantum coherence generated from the optomagnomechanical system are important resources in quantum information and quantum computation. In this paper, a sc…