Josephson junctions based on ultraclean carbon nanotubes

Fuente: arXiv
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Main Authors: Annabi, S., Arrighi, E., Peugeot, A., Riechert, H., Griesmar, J., Watanabe, K., Taniguchi, T., Bretheau, L., Pillet, J. -D.
Format: Preprint
Published: 2024
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author Annabi, S.
Arrighi, E.
Peugeot, A.
Riechert, H.
Griesmar, J.
Watanabe, K.
Taniguchi, T.
Bretheau, L.
Pillet, J. -D.
author_facet Annabi, S.
Arrighi, E.
Peugeot, A.
Riechert, H.
Griesmar, J.
Watanabe, K.
Taniguchi, T.
Bretheau, L.
Pillet, J. -D.
contents We present a technique for integrating ultraclean carbon nanotubes into superconducting circuits, aiming to realize Josephson junctions based on one-dimensional elementary quantum conductors. This technique primarily involves depositing the nanotube in the final step, thus preserving it from the inherent contaminations of nanofabrication and maintaining contact solely with superconducting electrodes and a crystalline hBN substrate. Through transport measurements performed in both the normal and superconducting states, we demonstrate that our method yields high-quality junctions with Josephson energies suitable for quantum device applications, such as carbon nanotube-based superconducting qubits.
format Preprint
id arxiv_https___arxiv_org_abs_2405_19192
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Josephson junctions based on ultraclean carbon nanotubes
Annabi, S.
Arrighi, E.
Peugeot, A.
Riechert, H.
Griesmar, J.
Watanabe, K.
Taniguchi, T.
Bretheau, L.
Pillet, J. -D.
Mesoscale and Nanoscale Physics
Applied Physics
We present a technique for integrating ultraclean carbon nanotubes into superconducting circuits, aiming to realize Josephson junctions based on one-dimensional elementary quantum conductors. This technique primarily involves depositing the nanotube in the final step, thus preserving it from the inherent contaminations of nanofabrication and maintaining contact solely with superconducting electrodes and a crystalline hBN substrate. Through transport measurements performed in both the normal and superconducting states, we demonstrate that our method yields high-quality junctions with Josephson energies suitable for quantum device applications, such as carbon nanotube-based superconducting qubits.
title Josephson junctions based on ultraclean carbon nanotubes
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2405.19192