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Autores principales: Spasaro, M., Bonen, S., Cooke, G., Jager, T., Nhut, T. D., Sufra, D., Voinigescu, S. P., Zito, D.
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2406.12115
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author Spasaro, M.
Bonen, S.
Cooke, G.
Jager, T.
Nhut, T. D.
Sufra, D.
Voinigescu, S. P.
Zito, D.
author_facet Spasaro, M.
Bonen, S.
Cooke, G.
Jager, T.
Nhut, T. D.
Sufra, D.
Voinigescu, S. P.
Zito, D.
contents This paper reports the design and experimental characterization of a cryogenic compact low-power 60GHz amplifier for control of electron/hole spin qubits, as elementary building block for monolithic Si quantum processors. Tested at 2 K, the amplifier exhibits S21 of 15 dB at 59 GHz, BW3dB of 52.5-67.5 GHz, and power consumption of 2.16 mW. Owing to the topology with inductorless active network, the amplifier has a compact core area of 0.18 x 0.19 mm2.
format Preprint
id arxiv_https___arxiv_org_abs_2406_12115
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cryogenic Compact Low-Power 60GHz Amplifier for Spin Qubit Control in Monolithic Silicon Quantum Processors
Spasaro, M.
Bonen, S.
Cooke, G.
Jager, T.
Nhut, T. D.
Sufra, D.
Voinigescu, S. P.
Zito, D.
Quantum Physics
This paper reports the design and experimental characterization of a cryogenic compact low-power 60GHz amplifier for control of electron/hole spin qubits, as elementary building block for monolithic Si quantum processors. Tested at 2 K, the amplifier exhibits S21 of 15 dB at 59 GHz, BW3dB of 52.5-67.5 GHz, and power consumption of 2.16 mW. Owing to the topology with inductorless active network, the amplifier has a compact core area of 0.18 x 0.19 mm2.
title Cryogenic Compact Low-Power 60GHz Amplifier for Spin Qubit Control in Monolithic Silicon Quantum Processors
topic Quantum Physics
url https://arxiv.org/abs/2406.12115