Bulletin of the American Physical Society
2023 APS March Meeting
Volume 68, Number 3
Las Vegas, Nevada (March 5-10)
Virtual (March 20-22); Time Zone: Pacific Time
Session W74: Semiconducting Qubits IV
3:00 PM–6:00 PM,
Thursday, March 9, 2023
Room: Room 403/404
Sponsoring
Unit:
DQI
Chair: Andrey Kiselev, HRL Laboratories, LLC
Abstract: W74.00005 : Towards Si finFET quantum devices with reproducible behavior*
4:12 PM–4:24 PM
Presenter:
Matthias Mergenthaler
(IBM Research Europe - Zurich)
Authors:
Matthias Mergenthaler
(IBM Research Europe - Zurich)
Felix Schupp
(IBM Research Europe - Zurich)
Noelia Vico-Trivino
(IBM Research Europe - Zurich)
Konstantinos Tsoukalas
(IBM Research Europe - Zurich)
Lisa Sommer
(IBM Research Europe - Zurich)
Eoin G Kelly
(IBM Research Europe - Zurich)
Michele Aldeghi
(IBM Research Europe - Zurich)
Nico Hendrickx
(IBM Research Europe - Zurich)
Leonardo Massai
(IBM Research Europe - Zurich)
Andreas V Kuhlmann
(University of Basel)
Ute Drechsler
(IBM Research Europe - Zurich)
Antonis Olziersky
(IBM Research Europe - Zurich)
Peter Müller
(IBM Research Europe - Zurich)
Stephan Paredes
(IBM Research Europe - Zurich)
Gian Salis
(IBM Research Europe - Zurich)
Patrick Harvey-Collard
(IBM Research Europe - Zurich)
Andreas J Fuhrer
(IBM Research Europe - Zurich)
Here, we present our work towards reducing disorder and trapped charges by investigating material stacks utilizing Hall bar and percolation density measurements. Additionally, fabricating quantum dot devices with ultra-small gate length and pitch will enable a path towards mitigating disorder. We show Si finFET quantum dot devices exhibiting sub 20 nm gate lengths with a small pitch, fabricated with high-resolution e-beam lithography. The reproducibility of quantum dot formation is assessed through transport measurements, RF gate reflectometry, and charge sensing. From these results we draw conclusions on gate stack and fin shape optimization.
*This work was supported as a part of NCCR SPIN, a National Centre of Competence (or Excellence) in Research, funded by the Swiss National Science Foundation (grant number 51NF40-180604). Additionally, this work has received funding from the European Union's Horizon 2020 research and innovation programme under the Marie Sklodowska-Curie grant agreement No 899018.
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