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Multiplexed charge-locking device for large arrays of quantum devices


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Authors

Puddy, RK 
Al-Taie, H 
Chong, CH 

Abstract

We present a method of forming and controlling large arrays of gate-defined quantum devices. The method uses an on-chip, multiplexed charge-locking system and helps to overcome the restraints imposed by the number of wires available in cryostat measurement systems. The device architecture that we describe here utilises a multiplexer-type scheme to lock charge onto gate electrodes. The design allows access to and control of gates whose total number exceeds that of the available electrical contacts and enables the formation, modulation and measurement of large arrays of quantum devices. We fabricate such devices on n-type GaAs/AlGaAs substrates and investigate the stability of the charge locked on to the gates. Proof-of-concept is shown by measurement of the Coulomb blockade peaks of a single quantum dot formed by a floating gate in the device. The floating gate is seen to drift by approximately one Coulomb oscillation per hour.

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Keywords

Journal Title

Applied Physics Letters

Conference Name

Journal ISSN

0003-6951
1077-3118

Volume Title

107

Publisher

AIP
Sponsorship
UNIVERSITY COLLEGE LONDON (FB EPSRC) (EP/K004077/1)
EPSRC (EP/I014268/1)
This work was supported by the Engineering and Physical Sciences Research Council Grant No. EP/K004077/1.