Bulletin of the American Physical Society
APS March Meeting 2022
Volume 67, Number 3
Monday–Friday, March 14–18, 2022; Chicago
Session K39: Semiconductor Qubits V
3:00 PM–5:48 PM,
Tuesday, March 15, 2022
Room: McCormick Place W-196A
Sponsoring
Units:
DQI DCMP
Chair: Guido Burkard, Konstanz
Abstract: K39.00009 : Towards hole-spin qubits in Si pMOSFETs within a planar CMOS foundry technology*
5:00 PM–5:12 PM
Presenter:
Filippo Troiani
(CNR - Istituto Nanoscienze, Modena, Italy)
Authors:
Filippo Troiani
(CNR - Istituto Nanoscienze, Modena, Italy)
Laura Bellentani
(CNR - Istituto Nanoscienze, Modena, Italy)
Andrea Secchi
(CNR - Istituto Nanoscienze, Modena, Italy)
Andrea Bertoni
(CNR - Istituto Nanoscienze, Modena, Italy)
Matteo Bina
(Applied Materials, Reggio Emilia, Italy)
Andrea Padovani
(Applied Materials, Reggio Emilia, Italy)
Luca Larcher
(Applied Materials, Reggio Emilia, Italy)
Shai Bonen
(University of Toronto, Toronto, Canada)
Sorin Voinigescu
(University of Toronto, Toronto, Canada)
Moreover, the future down scaling of these devices will possibly improve the performance of both the classical (control) and quantum components of such monolithically integrated circuits. Here we use a multi-scale approach to simulate a hole-spin qubit in a down scaled Si-channel pMOSFET, whose structure is based on a commercial 22nm fully-depleted silicon-on-insulator device. Our calculations show the formation of well-defined hole quantum dots within the Si channel, and the possibility of a general electrical control, with Rabi frequencies of the order of 100 MHz for realistic field values. A crucial role of the channel aspect ratio is also demonstrated, as well as the presence of a favorable parameter range for the qubit manipulation.
*The authors acknowledge financial support from the European Commission through the project IQubits(Call: H2020–FETOPEN–2018–2019–2020–01, Project ID: 829005).
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