Coupled vertical double quantum dots at single-hole occupancy

Author:

Ivlev Alexander S.1ORCID,Tidjani Hanifa1ORCID,Oosterhout Stefan D.2ORCID,Sammak Amir2,Scappucci Giordano1ORCID,Veldhorst Menno1ORCID

Affiliation:

1. QuTech and Kavli Institute of Nanoscience, Delft University of Technology 1 , PO Box 5046, 2600 GA, Delft, The Netherlands

2. QuTech and Netherlands Organisation for Applied Scientific Research (TNO) 2 , Delft, The Netherlands

Abstract

Gate-defined quantum dots define an attractive platform for quantum computation and have been used to confine individual charges in a planar array. Here, we demonstrate control over vertical double quantum dots confined in a strained germanium double quantum well. We sense individual charge transitions with a single-hole transistor. The vertical separation between the quantum wells provides a sufficient difference in capacitive coupling to distinguish quantum dots located in the top and bottom quantum wells. Tuning the vertical double quantum dot to the (1,1) charge state confines a single-hole in each quantum well beneath a single plunger gate. By simultaneously accumulating holes under two neighboring plunger gates, we are able to tune to the (1,1,1,1) charge state. These results motivate quantum dot systems that exploit the third dimension, opening new opportunities for quantum simulation and quantum computing.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

European Research Council

Publisher

AIP Publishing

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