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

Authors :
Han, Zhikun
Dong, Yuqian
Liu, Baojie
Yang, Xiaopei
Song, Shuqing
Qiu, Luqing
Li, Danyu
Chu, Ji
Zheng, Wen
Xu, Jianwen
Huang, Tianqi
Wang, Zhimin
Yu, Xiangmin
Tan, Xinsheng
Lan, Dong
Yung, Man-Hong
Yu, Yang
Publication Year :
2020

Abstract

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 gates. However, the conventional approach of NHQC is sensitive to control instability, as it requires the driving pulses to cover a fixed pulse area. Furthermore, even for small-angle rotations, all operations need to be completed with the same duration of time. Here we experimentally demonstrate a time-optimal and unconventional approach of NHQC (called TOUNHQC), which can optimize the operation time of any holonomic gate. Compared with the conventional approach, TOUNHQC provides an extra layer of robustness to decoherence and control errors. The experiment involves a scalable architecture of superconducting circuit, where we achieved a fidelity of 99.51% for a single qubit gate using interleaved randomized benchmarking. Moreover, a two-qubit holonomic control-phase gate has been implemented where the gate error can be reduced by as much as 18% compared with NHQC.

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2004.10364
Document Type :
Working Paper