DOE OSTI · 3673288
Anomalous superconductivity in twisted MoTe 2 nanojunctions
Abstract
Introducing superconductivity in topological materials can lead to innovative electronic phases and device functionalities. Here, we present a unique strategy for quantum engineering of superconducting junctions in moiré materials through direct, on-chip, and fully encapsulated 2D crystal growth. We achieve robust and designable superconductivity in Pd-metalized twisted bilayer molybdenum ditelluride (MoTe 2 ) and observe anomalous superconducting effects in high-quality junctions across ~20 moiré cells. Unexpectedly, the junction develops enhanced, instead of weakened, superconducting behaviors, exhibiting fluctuations to a higher critical magnetic field compared to its adjacent Pd 7 MoTe 2 superconductor. In addition, the critical current further exhibits a notable V-shaped minimum at zero magnetic field. These features are unexpected in conventional Josephson junctions and absent in junctions of natural bilayer MoTe 2 created using the same approach. We discuss implications of these observations, including the possible formation of mixed even- and odd-parity superconductivity at the moiré junctions. Our results also demonstrate a pathway to engineer and investigate superconductivity in fractional Chern insulators.
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Jia, Yanyu (ORCID:0000000160618441), Song, Tiancheng (ORCID:0000000268456624), Zheng, Zhaoyi, Cheng, Guangming (ORCID:0000000158521341), Uzan, Ayelet (ORCID:0000000265084685), Yu, Guo (ORCID:0000000318129825), Tang, Yue (ORCID:0000000305065455), Pollak, Connor, Yuan, Fang (ORCID:0000000172863233), Onyszczak, Michael (ORCID:0000000194112369), Watanabe, Kenji (ORCID:0000000337018119), Taniguchi, Takashi (ORCID:0000000214673105), Lei, Shiming (ORCID:0000000180417161), Yao, Nan (ORCID:0000000240811495), Schoop, Leslie (ORCID:0000000334594241), Ong, N. (ORCID:0000000171661058), Wu, Sanfeng (ORCID:0000000262276286). 2025-01-31. Anomalous superconductivity in twisted MoTe 2 nanojunctions. https://doi.org/10.1126/sciadv.adq5712
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