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20192022
most citedExperimental Realization of Universal Time-optimal non-Abelian Geometric Gates

14 citations · 14 across the 3 of their papers we have counts for

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quant-ph2022

Experimental Implementation of Noncyclic and Nonadiabatic Geometric Quantum Gates in a Superconducting Circuit

Zhuang Ma, Jianwen Xu, Tao Chen +6

Quantum gates based on geometric phases possess intrinsic noise-resilience features and therefore attract much attention. However, the implementations of previous geometric quantum…

quant-ph2022

Measuring quantum geometric tensor of non-Abelian system in superconducting circuits

Wen Zheng, Jianwen Xu, Zhuang Ma +11

Topology played an important role in physics research during the last few decades. In particular, the quantum geometric tensor that provides local information about topological pro…

quant-ph2020

Experimental Observation of Tensor Monopoles with a Superconducting Qudit

Xinsheng Tan, Dan-Wei Zhang, Wen Zheng +9

Monopoles play a center role in gauge theories and topological matter. There are two fundamental types of monopoles in physics: vector monopoles and tensor monopoles. Examples of v…

quant-ph202014 cited

Experimental Realization of Universal Time-optimal non-Abelian Geometric Gates

Zhikun Han, Yuqian Dong, Baojie Liu +14

Based on the geometrical nature of quantum phases, non-adiabatic holonomic quantum control (NHQC) has become a standard technique for enhancing robustness in constructing quantum g…

quant-ph2020

Switchable next-nearest-neighbor coupling for controlled two-qubit operations

Peng Zhao, Peng Xu, Dong Lan +3

In a superconducting quantum processor with nearest neighbor coupling, the dispersive interaction between adjacent qubits can result in an effective next-nearest-neighbor coupling…

quant-ph2019

Realization of Superadiabatic Two-qubit Gates Using Parametric Modulation in Superconducting Circuits

Ji Chu, Danyu Li, Xiaopei Yang +10

Fast robust two-qubit gate operation with low susceptibility to crosstalk are the key to scalable quantum information processing. Parametrically driven gate is inherently insensiti…