Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session G49: Novel Spin Qubits
11:30 AM–2:18 PM,
Tuesday, March 5, 2024
Room: 200G
Sponsoring
Units:
DQI DCMP GMAG
Chair: Charles Tahan, Laboratory for Physical Sciences
Abstract: G49.00012 : Mechanism of high-temperature quantum dot operation in isoelectronic-trap-assisted tunnel FETs*
2:06 PM–2:18 PM
Presenter:
Shota Iizuka
(AIST)
Authors:
Shota Iizuka
(AIST)
Hidehiro Asai
(AIST)
Kimihiko Kato
(AIST)
Hiroshi Oka
(AIST)
Junichi Hattori
(AIST)
Koichi Fukuda
(AIST)
Takahiro Mori
(AIST)
This device operates as a SET with tunneling between the source and drain intermediated with the IET state. Firstly, short gate length must be employed such that tunneling distances are sufficiently short. Secondly, the quantum dot should be located far from the source and drain, to avoid Coulomb repulsion between a charged quantum dot and surrounding electrons hindering the charge up of the quantum dot. This requirement becomes stricter at high temperatures because the number of surrounding electrons increases. Thirdly, the localized IET state is preferred to produce a small quantum dot. This causes a deep potential distribution when the quantum dot is charged up, resulting in large charging energy. Satisfying these three requirements enables high-temperature SET operation of the devices.
*This work was supported by JST CREST Grant No. JPMJCR1871, and MEXT Quantum Leap Flagship Program (Q-LEAP) Grant No. JPMXS0118069228, Japan.
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