activity
20182022
most citedQuantum sensing with a single-qubit pseudo-Hermitian system

87 citations · 114 across the 3 of their papers we have counts for

collaborators

7 papers

quant-ph202222 cited

Optimal quantum optical control of spin in diamond

Jiazhao Tian, Tianyi Du, Yu Liu +4

The nitrogen-vacancy (NV) center spin represents an appealing candidate for quantum information processing. Besides the widely used microwave control, its coherent manipulation may…

quant-ph20225 cited

Dynamical decoupling for realization of topological frequency conversion

Qianqian Chen, Haibin Liu, Min Yu +2

The features of topological physics can manifest in a variety of physical systems in distinct ways. Periodically driven systems, with the advantage of high flexibility and controll…

quant-ph2020

Quantum optimal control using phase-modulated driving fields

Jiazhao Tian, Haibin Liu, Yu Liu +5

Quantum optimal control represents a powerful technique to enhance the performance of quantum experiments by engineering the controllable parameters of the Hamiltonian. However, th…

quant-ph201987 cited

Quantum sensing with a single-qubit pseudo-Hermitian system

Yaoming Chu, Yu Liu, Haibin Liu +1

Quantum sensing exploits fundamental features of quantum system to achieve highly efficient measurement of physical quantities. Here, we propose a strategy to realize a single-qubi…

quant-ph2019

Nanotube Double Quantum Dot Spin Transducer for Scalable Quantum Information Processing

Wanlu Song, Tianyi Du, Haibin Liu +2

One of the key challenges for the implementation of scalable quantum information processing is the design of scalable architectures that support coherent interaction and entangleme…

quant-ph2018

Experimental measurement of the quantum geometric tensor using coupled qubits in diamond

Min Yu, Pengcheng Yang, Musang Gong +9

Geometry and topology are fundamental concepts, which underlie a wide range of fascinating physical phenomena such as topological states of matter and topological defects. In quant…