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Data needs and challenges for quantum dot devices automation

delete2024-10-31
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OA
AI
J
Justyna P. Zwolak *
J
Jacob M. Taylor *
R
Reed W. Andrews
J
J D Benson
G
Garnett W. Bryant
D
Donovan Buterakos
A
Anasua Chatterjee
S
S. Das Sarma
M
M. A. Eriksson
E
Eliška Greplová
M
Michael J. Gullans
F
Fabian Hader
T
Tyler J. Kovach
P
Pranav Mundada
M
Mick Ramsey
T
Torbjørn Rasmussen
B
Brandon Severin
A
A. J. Sigillito
B
Brennan Undseth
B
Brian Weber
DOI:10.1038/s41534-024-00878-xdelete
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Abstract

Abstract

En 中文
Gate-defined quantum dots are a promising candidate system for realizing scalable, coupled qubit systems and serving as a fundamental building block for quantum computers. However, present-day quantum dot devices suffer from imperfections that must be accounted for, which hinders the characterization, tuning, and operation process. Moreover, with an increasing number of quantum dot qubits, the relevant parameter space grows sufficiently to make heuristic control infeasible. Thus, it is imperative that reliable and scalable autonomous tuning approaches are developed. This meeting report outlines current challenges in automating quantum dot device tuning and operation with a particular focus on datasets, benchmarking, and standardization. We also present insights and ideas put forward by the quantum dot community on how to overcome them. We aim to provide guidance and inspiration to researchers invested in automation efforts.

Journal

npj Quantum Information cover
npj Quantum Information
IF:
8.3
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1.4K
Citations:
8.1K

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University of Copenhagen
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university of wisconsin madison
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University of Wisconsin System cover
University of Wisconsin System
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University System of Maryland cover
University System of Maryland
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national institute of standards & technology (nist) - usa
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niels bohr institute
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