28nm Fully-Depleted SOI Technology: Cryogenic Control Electronics for Quantum Computing

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Bohuslavskyi, H., Barraud, S., Cassé, M., Barral, V., Bertrand, B., Hutin, L., Arnaud, F., Galy, P., Sanquer, M., De Franceschi, S., Vinet, M.
Format: Preprint
Published: 2019
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916184260083712
author Bohuslavskyi, H.
Barraud, S.
Cassé, M.
Barral, V.
Bertrand, B.
Hutin, L.
Arnaud, F.
Galy, P.
Sanquer, M.
De Franceschi, S.
Vinet, M.
author_facet Bohuslavskyi, H.
Barraud, S.
Cassé, M.
Barral, V.
Bertrand, B.
Hutin, L.
Arnaud, F.
Galy, P.
Sanquer, M.
De Franceschi, S.
Vinet, M.
contents This paper reports the first cryogenic characterization of 28nm Fully-Depleted-SOI CMOS technology. A comprehensive study of digital/analog performances and body-biasing from room to the liquid helium temperature is presented. Despite a cryogenic operation, effectiveness of body-biasing remains unchanged and provides an excellent $V_{TH}$ controllability. Low-temperature operation enables higher drive current and a largely reduced subthreshold swing (down to 7mV/dec). FDSOI can provide a valuable approach to cryogenic low-power electronics. Applications such as classical control hardware for quantum processors are envisioned.
format Preprint
id arxiv_https___arxiv_org_abs_2002_07070
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle 28nm Fully-Depleted SOI Technology: Cryogenic Control Electronics for Quantum Computing
Bohuslavskyi, H.
Barraud, S.
Cassé, M.
Barral, V.
Bertrand, B.
Hutin, L.
Arnaud, F.
Galy, P.
Sanquer, M.
De Franceschi, S.
Vinet, M.
Applied Physics
Mesoscale and Nanoscale Physics
Quantum Physics
This paper reports the first cryogenic characterization of 28nm Fully-Depleted-SOI CMOS technology. A comprehensive study of digital/analog performances and body-biasing from room to the liquid helium temperature is presented. Despite a cryogenic operation, effectiveness of body-biasing remains unchanged and provides an excellent $V_{TH}$ controllability. Low-temperature operation enables higher drive current and a largely reduced subthreshold swing (down to 7mV/dec). FDSOI can provide a valuable approach to cryogenic low-power electronics. Applications such as classical control hardware for quantum processors are envisioned.
title 28nm Fully-Depleted SOI Technology: Cryogenic Control Electronics for Quantum Computing
topic Applied Physics
Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2002.07070