most citedObservation of Time-domain Rabi Oscillations in the Landau-Zener Regime with a Single Electronic Spin

64 citations · 173 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph2013★ 56 cited

Implementation of dynamically corrected gates for single-spin qubits

Xing Rong, Jianpei Geng, Zixiang Wang +5

Precise control of an open quantum system is critical to quantum information processing, but is challenging due to inevitable interactions between the quantum system and the enviro…

quant-ph2013★ 53 cited

Demonstration of Motion Transduction Based on Parametrically Coupled Mechanical Resonators

Pu Huang, Pengfei Wang, Jingwei Zhou +6

Universal sensing the motion of mechanical resonators with high precision and low back-action is of paramount importance in ultra-weak signal detection which plays a fundamental ro…

quant-ph2013★ 64 cited

Observation of Time-domain Rabi Oscillations in the Landau-Zener Regime with a Single Electronic Spin

Jingwei Zhou, Pu Huang, Qi Zhang +7

Under resonant conditions, a long sequence of landau-zener transitions can lead to Rabi oscillations. Using a nitrogen-vacancy (NV) center spin in diamond, we investigated the inte…

quant-ph2012

Experimental protection and revival of quantum correlation in open solid systems

Xing Rong, Fangzhou Jin, Zixiang Wang +7

Quantum correlation quantified by quantum discord has been demonstrated experimentally as important physical resources in quantum computation and communication for some cases even…

quant-ph2012

Coherence-protected Quantum Gate by Continuous Dynamical Decoupling in Diamond

Xiangkun Xu, Zixiang Wang, Changkui Duan +8

To implement reliable quantum information processing, quantum gates have to be protected together with the qubits from decoherence. Here we demonstrate experimentally on nitrogen-v…

quant-ph2012

Quantum Discord for Investigating Quantum Correlations without Entanglement in Solids

Xing Rong, Zixiang Wang, Fangzhou Jin +7

Quantum systems unfold diversified correlations which have no classical counterparts. These quantum correlations have various different facets. Quantum entanglement, as the most we…