10 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…
Complete characterization of beam deflection based on double weak value amplification system
Yu Wang, Rongguo Yang, Jing Zhang +4
The precise measurement of spatial attitude parameters is critical for applications in inertial navigation, industrial monitoring, instrument calibration, quantum metrology, etc. 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 Compact One-Way Fault-Tolerant Optical Quantum Computation
Peilin Du, Jing Zhang, Rongguo Yang
One-way quantum computation is a promising approach to achieving universal, scalable, and fault-tolerant quantum computation. However, a main challenge lies in the creation of univ…