20 citations · 38 across the 3 of their papers we have counts for
9 papers · 1 filter
Fast quantum state transfer and entanglement for cavity-coupled many qubits via dark pathways
Yi-Xuan Wu, Zi-Yan Guan, Sai Li +1
Quantum state transfer (QST) and entangled state generation (ESG) are important building blocks for modern quantum information processing. To achieve these tasks, convention wisdom…
Noncyclic nonadiabatic holonomic quantum gates via shortcuts to adiabaticity
Sai Li, Pu Shen, Tao Chen +1
High-fidelity quantum gates are essential for large-scale quantum computation. However, any quantum manipulation will inevitably affected by noises, systematic errors and decoheren…
Nonadiabatic geometric quantum gates that are insensitive to qubit-frequency drifts
Jian Zhou, Sai Li, Guo-Zhu Pan +3
Quantum manipulation based on geometric phases provides a promising way towards robust quantum gates. However, in the current implementation of nonadiabatic geometric phases, opera…
High-fidelity geometric quantum gates with short paths on superconducting circuits
Sai Li, Jing Xue, Tao Chen +1
Geometric phases are robust against certain types of local noises, and thus provide a promising way towards high-fidelity quantum gates. However, comparing with the dynamical ones,…
Dynamically Corrected Nonadiabatic Holonomic Quantum Gates
Sai Li, Zheng-Yuan Xue
The key for realizing fault-tolerant quantum computation lies in maintaining the coherence of all qubits so that high-fidelity and robust quantum manipulations on them can be achie…
Experimental Realization of Nonadiabatic Holonomic Single-Qubit Quantum Gates\\ with Optimal Control in a Trapped Ion
Ming-Zhong Ai, Sai Li, Zhibo Hou +7
Quantum computation with quantum gates induced by geometric phases is regarded as a promising strategy in fault tolerant quantum computation, due to its robustness against operatio…