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2023 roadmap for materials for quantum technologies

delete2023-01-25
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OA
AI
C
Christoph Becher *
W
Weibo Gao *
S
Swastik Kar *
C
Christian D. Marciniak
T
Thomas Monz
J
John G. Bartholomew
P
Philippe Goldner
H
Huanqian Loh
E
Elizabeth Marcellina
K
Kuan Eng Johnson Goh
T
Teck Seng Koh
B
Bent Weber
Z
Zhao Mu
J
Jeng-Yuan Tsai
Q
Qimin Yan
T
Tobias Huber
S
Sven Höfling
S
Samuel Gyger
S
Stephan Steinhauer
Z
Zwiller, Val
DOI:10.1088/2633-4356/aca3f2delete
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Abstract

Abstract

En 中文
Quantum technologies are poised to move the foundational principles of quantum physics to the forefront of applications. This roadmap identifies some of the key challenges and provides insights on material innovations underlying a range of exciting quantum technology frontiers. Over the past decades, hardware platforms enabling different quantum technologies have reached varying levels of maturity. This has allowed for first proof-of-principle demonstrations of quantum supremacy, for example quantum computers surpassing their classical counterparts, quantum communication with reliable security guaranteed by laws of quantum mechanics, and quantum sensors uniting the advantages of high sensitivity, high spatial resolution, and small footprints. In all cases, however, advancing these technologies to the next level of applications in relevant environments requires further development and innovations in the underlying materials. From a wealth of hardware platforms, we select representative and promising material systems in currently investigated quantum technologies. These include both the inherent quantum bit systems and materials playing supportive or enabling roles, and cover trapped ions, neutral atom arrays, rare earth ion systems, donors in silicon, color centers and defects in wide-band gap materials, two-dimensional materials and superconducting materials for single-photon detectors. Advancing these materials frontiers will require innovations from a diverse community of scientific expertise, and hence this roadmap will be of interest to a broad spectrum of disciplines.
Keywords:
quantum
materials
quantum technology
quantum information science

Journal

Materials for Quantum Technology cover
Materials for Quantum Technology
IF:
3.6
Papers:
155
Citations:
308

Organization

U
University of Innsbruck
Scholars:
9.8K
Papers: 8.6K
Citations: 8
C
centre national de la recherche scientifique (cnrs)
Scholars:
24.5W
Papers: 18.2W
Citations: 279
U
University of Sydney
Scholars:
6.5W
Papers: 6.2W
Citations: 90
N
Nanyang Technological University
Scholars:
4.9W
Papers: 4.8W
Citations: 8.1W
N
Northeastern University
Scholars:
2.5W
Papers: 1.6W
Citations: 3.0W
S
Saarland University
Scholars:
8.7K
Papers: 6.8K
Citations: 1.3W
R
Royal Institute of Technology
Scholars:
1.8W
Papers: 1.8W
Citations: 25
Chimie ParisTech cover
Chimie ParisTech
Scholars:
1.4K
Papers: 1.1K
Citations: 3.7K
U
University of Wurzburg
Scholars:
2.5W
Papers: 2.0W
Citations: 2.5W
A
agency for science technology & research (a*star)
Scholars:
2.2W
Papers: 1.9W
Citations: 57
N
National University of Singapore
Scholars:
7.5W
Papers: 6.5W
Citations: 11.4W
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