217 citations · 364 across the 8 of their papers we have counts for
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Ultrafast Holonomic Quantum Gates
Pu Shen, Tao Chen, Zheng-Yuan Xue
Quantum computation based on geometric phase is generally believed to be more robust against certain errors or noises than the conventional dynamical strategy. However, the gate er…
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,…
Noncyclic Geometric Quantum Gates with Smooth Paths via Invariant-based Shortcuts
Li-Na Ji, Cheng-Yun Ding, Tao Chen +1
Nonadiabatic geometric quantum computation is dedicated to the realization of high-fidelity and robust quantum gates, which are necessary for fault-tolerant quantum computation. Ho…
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…