activity
20162020
most citedTunable non-reciprocal quantum transport through a dissipative Aharonov-Bohm ring in ultracold atoms

217 citations · 319 across the 5 of their papers we have counts for

collaborators

14 papers

cond-mat.quant-gas202011 cited

Periodic driving induced helical Floquet channels with ultracold atoms in momentum space

Teng Xiao, Dizhou Xie, Wei Gou +4

Employing the external degrees of freedom of atoms as synthetic dimensions renders easy and new accesses to quantum engineering and quantum simulation. As a recent development, ult…

quant-ph202045 cited

Robust and Fast Holonomic Quantum Gates with Encoding on Superconducting Circuits

Tao Chen, Pu Shen, Zheng-Yuan Xue

High-fidelity and robust quantum manipulation is the key for scalable quantum computation. Therefore, due to the intrinsic operational robustness, quantum manipulation induced by g…

quant-ph2020

Nonadiabatic geometric quantum computation with optimal control on superconducting circuits

Jing Xu, Sai Li, Tao Chen +1

Quantum gates, which are the essential building blocks of quantum computers, are very fragile. Thus, to realize robust quantum gates with high fidelity is the ultimate goal of quan…

quant-ph2020

High-fidelity geometric gate for silicon-based spin qubits

Chengxian Zhang, Tao Chen, Sai Li +2

High-fidelity manipulation is the key for the physical realization of fault-tolerant quantum computation. Here, we present a protocol to realize universal nonadiabatic geometric ga…

cond-mat.quant-gas2020217 cited

Tunable non-reciprocal quantum transport through a dissipative Aharonov-Bohm ring in ultracold atoms

Wei Gou, Tao Chen, Dizhou Xie +5

We report the experimental observation of tunable, non-reciprocal quantum transport of a Bose-Einstein condensate in a momentum lattice. By implementing a dissipative Aharonov-Bohm…

quant-ph2019

Experimental implementation of universal nonadiabatic geometric quantum gates in a superconducting circuit

Yuan Xu, Ziyue Hua, Tao Chen +9

Using geometric phases to realize noise-resilient quantum computing is an important method to enhance the control fidelity. In this work, we experimentally realize a universal nona…