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Controlled quantum dot array segmentation via highly tunable interdot tunnel coupling

delete2022-08-22
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OA
AI
M
Martin Nurizzo *
B
Baptiste Jadot
P
Pierre-André Mortemousque
V
Vivien Thiney
E
Emmanuel Chanrion
M
Matthieu Dartiailh
A
Arne Ludwig
A
Andreas D. Wieck
C
Christopher Bäuerle
M
Matias Urdampilleta
T
Tristan Meunier
DOI:10.1063/5.0105635delete
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Abstract

Abstract

En 中文
Recent demonstrations using electron spins stored in quantum dot array as qubits are promising for developing a scalable quantum computing platform. An ongoing effort is, therefore, aiming at the precise control of the quantum dot parameters in larger and larger arrays which represents a complex challenge. Partitioning of the system with the help of the inter-dot tunnel barriers can lead to a simplification for tuning and offers a protection against unwanted charge displacement. In a triple quantum dot system, we demonstrate a nanosecond control of the inter-dot tunnel rate permitting to reach the two extreme regimes, large GHz tunnel coupling, and sub-Hz isolation between adjacent dots. We use this development to isolate a subpart of the array in a metastable configuration while performing charge displacement and readout in the rest of the system. The degree of control over tunnel coupling achieved in a unit cell should motivate future protocol development for tuning, manipulation, and readout including this capability.

Journal

Applied Physics Letters cover
Applied Physics Letters
IF:
3.6
Papers:
10.4W
Citations:
17.8W

Organization

U
universite grenoble alpes (uga)
Scholars:
2.1W
Papers: 1.5W
Citations: 23
I
institut national polytechnique de grenoble
Scholars:
6.7K
Papers: 5.2K
Citations: 1
C
communaute universite grenoble alpes
Scholars:
3.5W
Papers: 2.7W
Citations: 29
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