6–11 Jun 2021
Underline Conference System
America/Toronto timezone
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Electrostatically gated quantum dots in van der Waals materials

10 Jun 2021, 16:15
3m
Underline Conference System

Underline Conference System

Oral not-in-competition (Graduate Student) / Orale non-compétitive (Étudiant(e) du 2e ou 3e cycle) Condensed Matter and Materials Physics / Physique de la matière condensée et matériaux (DCMMP-DPMCM) R3-5 Contributed Talks VI (DCMMP) / Conférences soumises VI (DPMCM)

Speaker

Justin Boddison-Chouinard (University of Ottawa)

Description

Quantum confinement and manipulation of charge carriers are critical for achieving devices practical for various quantum technologies. Atomically thin transition metal dichalcogenides (TMDCs) have attractive properties such as spin-valley locking, large spin-orbit coupling and high confinement energies which provide a promising platform for novel quantum technologies. In this talk, we present the design and fabrication of electrostatically gated quantum structures based on fully encapsulated monolayer tungsten diselenide (WSe2) aimed at probing the confined electron states in these structures. Furthermore, we show that laterally gated quantum point contacts successfully pinch-off the current across the device with gate voltages consistent with their lithographic widths. Finally, we discuss the origins of the observed mesoscopic transport features related to the emergence of the quantum dots through the WSe2 channel.

Authors

Justin Boddison-Chouinard (University of Ottawa) Alex Bogan (National Research Council Canada (NRC)) Pawel Hawrylak (University of Ottawa) Sergei Studenikin (National Research Council Canada (NRC)) Louis Gaudreau (National Research Council Canada (NRC)) Andrew Sachrajda (National Research Council Canada (NRC)) Adina Luican-Mayer (University of Ottawa)

Presentation materials

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