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Rapid and unconditional parametric reset protocol for tunable superconducting qubits.

Authors :
Zhou, Yu
Zhang, Zhenxing
Yin, Zelong
Huai, Sainan
Gu, Xiu
Xu, Xiong
Allcock, Jonathan
Liu, Fuming
Xi, Guanglei
Yu, Qiaonian
Zhang, Hualiang
Zhang, Mengyu
Li, Hekang
Song, Xiaohui
Wang, Zhan
Zheng, Dongning
An, Shuoming
Zheng, Yarui
Zhang, Shengyu
Source :
Nature Communications; 10/11/2021, Vol. 12 Issue 1, p1-8, 8p
Publication Year :
2021

Abstract

Qubit initialization is a critical task in quantum computation and communication. Extensive efforts have been made to achieve this with high speed, efficiency and scalability. However, previous approaches have either been measurement-based and required fast feedback, suffered from crosstalk or required sophisticated calibration. Here, we report a fast and high-fidelity reset scheme, avoiding the issues above without any additional chip architecture. By modulating the flux through a transmon qubit, we realize a swap between the qubit and its readout resonator that suppresses the excited state population to 0.08% ± 0.08% within 34 ns (284 ns if photon depletion of the resonator is required). Furthermore, our approach (i) can achieve effective second excited state depletion, (ii) has negligible effects on neighboring qubits, and (iii) offers a way to entangle the qubit with an itinerant single photon, useful in quantum communication applications. Reliable and fast active reset protocols are key to the functioning of quantum computing systems. Here, the authors use parametric driving to swap an excitation from a transmon qubit to its readout resonator within 34 ns, with negligible effects on neighboring qubits. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
12
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
152948136
Full Text :
https://doi.org/10.1038/s41467-021-26205-y