Preserving the Josephson Coupling of Twisted Cuprate Junctions via Tailored Silicon Nitride Circuits Boards

Fuente: arXiv
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Main Authors: Confalone, Tommaso, Sardo, Flavia Lo, Montemurro, Domenico, Massarotti, Davide, Vinokur, Valerii M., Gu, Genda, Tafuri, Francesco, Nielsch, Kornelius, Haider, Golam, Poccia, Nicola
Format: Preprint
Published: 2025
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author Confalone, Tommaso
Sardo, Flavia Lo
Montemurro, Domenico
Massarotti, Davide
Vinokur, Valerii M.
Gu, Genda
Tafuri, Francesco
Nielsch, Kornelius
Haider, Golam
Poccia, Nicola
author_facet Confalone, Tommaso
Sardo, Flavia Lo
Montemurro, Domenico
Massarotti, Davide
Vinokur, Valerii M.
Gu, Genda
Tafuri, Francesco
Nielsch, Kornelius
Haider, Golam
Poccia, Nicola
contents Controlled fabrication of twisted van der Waals heterostructures is essential to unlock the full potential of moire materials. However, achieving reproducibility remains a major challenge, particularly for air-sensitive materials such as $Bi_{2}Sr_{2}CaCu_{2}O_{8+δ}$ (BSCCO), where it is crucial to preserve the intrinsic and delicate superconducting properties of the interface throughout the entire fabrication process. Here, we present a dry, inert and cryogenic assembly method that combines silicon nitride nanomembranes (NMBs) with pre-patterned electrodes and the cryogenic stacking technique (CST) to fabricate high-quality twisted BSCCO Josephson junctions (JJs). This protocol prevents thermal and chemical degradation during both interface formation and electrical contact integration. We also find that asymmetric membrane designs, such as a double cantilever, effectively suppress vibration-induced disorder due to wire bonding, resulting in sharp and hysteretic current-voltage characteristics. The junctions exhibit a twist-angle-dependent Josephson coupling with magnitudes comparable to the highest-performing devices reported to date, but achieved through a straightforward and versatile contact method, offering a scalable and adaptable platform for future applications. These findings highlight the importance of both interface and contact engineering in addressing reproducibility in superconducting van der Waals heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2511_16241
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Preserving the Josephson Coupling of Twisted Cuprate Junctions via Tailored Silicon Nitride Circuits Boards
Confalone, Tommaso
Sardo, Flavia Lo
Montemurro, Domenico
Massarotti, Davide
Vinokur, Valerii M.
Gu, Genda
Tafuri, Francesco
Nielsch, Kornelius
Haider, Golam
Poccia, Nicola
Superconductivity
Controlled fabrication of twisted van der Waals heterostructures is essential to unlock the full potential of moire materials. However, achieving reproducibility remains a major challenge, particularly for air-sensitive materials such as $Bi_{2}Sr_{2}CaCu_{2}O_{8+δ}$ (BSCCO), where it is crucial to preserve the intrinsic and delicate superconducting properties of the interface throughout the entire fabrication process. Here, we present a dry, inert and cryogenic assembly method that combines silicon nitride nanomembranes (NMBs) with pre-patterned electrodes and the cryogenic stacking technique (CST) to fabricate high-quality twisted BSCCO Josephson junctions (JJs). This protocol prevents thermal and chemical degradation during both interface formation and electrical contact integration. We also find that asymmetric membrane designs, such as a double cantilever, effectively suppress vibration-induced disorder due to wire bonding, resulting in sharp and hysteretic current-voltage characteristics. The junctions exhibit a twist-angle-dependent Josephson coupling with magnitudes comparable to the highest-performing devices reported to date, but achieved through a straightforward and versatile contact method, offering a scalable and adaptable platform for future applications. These findings highlight the importance of both interface and contact engineering in addressing reproducibility in superconducting van der Waals heterostructures.
title Preserving the Josephson Coupling of Twisted Cuprate Junctions via Tailored Silicon Nitride Circuits Boards
topic Superconductivity
url https://arxiv.org/abs/2511.16241