118 citations · 438 across the 8 of their papers we have counts for
12 papers
Realizing nonadiabatic holonomic quantum computation beyond the three-level setting
G. F. Xu, P. Z. Zhao, Erik Sjöqvist +1
Nonadiabatic holonomic quantum computation (NHQC) provides a method to implement error resilient gates and that has attracted considerable attention recently. Since it was proposed…
Dynamical-decoupling-protected nonadiabatic holonomic quantum computation
P. Z. Zhao, X. Wu, D. M. Tong
The main obstacles to the realization of high-fidelity quantum gates are the control errors arising from inaccurate manipulation of a quantum system and the decoherence caused by t…
General approach for constructing Hamiltonians for nonadiabatic holonomic quantum computation
P. Z. Zhao, K. Z. Li, G. F. Xu +1
The main challenges in achieving high-fidelity quantum gates are to reduce the influence of control errors caused by imperfect Hamiltonians and the influence of decoherence caused…
Approach to realizing nonadiabatic geometric gates with prescribed evolution paths
K. Z. Li, P. Z. Zhao, D. M. Tong
Nonadiabatic geometric phases are only dependent on the evolution path of a quantum system but independent of the evolution details, and therefore quantum computation based on nona…
Nonadiabatic holonomic multiqubit controlled gates
P. Z. Zhao, G. F. Xu, D. M. Tong
Previous schemes of nonadiabatic holonomic quantum computation were focused mainly on realizing a universal set of elementary gates. Multiqubit controlled gates could be built by d…
Experimental realization of nonadiabatic geometric gates with a superconducting Xmon qubit
P. Z. Zhao, Zhangjingzi Dong, Zhenxing Zhang +3
Geometric phases are only dependent on evolution paths but independent of evolution details so that they own some intrinsic noise-resilience features. Based on different geometric…