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  5. Two-Fold Anisotropic Superconductivity in Bilayer T$_d$-MoTe$_2$

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Preprint
en
2024

Two-Fold Anisotropic Superconductivity in Bilayer T$_d$-MoTe$_2$

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0 Files

en
2024
DOI: 10.48550/arxiv.2409.09308arxiv.org/abs/2409.09308

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Kenji Watanabe
Kenji Watanabe

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Zizhong Li
Apoorv Jindal
Alex Strasser
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Abstract

Noncentrosymmetric 2D superconductors with large spin-orbit coupling offer an opportunity to explore superconducting behaviors far beyond the Pauli limit. One such superconductor, few-layer T$_d$-MoTe$_2$, has large upper critical fields that can exceed the Pauli limit by up to 600%. However, the mechanisms governing this enhancement are still under debate, with theory pointing towards either spin-orbit parity coupling or tilted Ising spin-orbit coupling. Moreover, ferroelectricity concomitant with superconductivity has been recently observed in the bilayer, where strong changes to superconductivity can be observed throughout the ferroelectric transition pathway. Here, we report the superconducting behavior of bilayer T$_d$-MoTe$ _2$ under an in-plane magnetic field, while systematically varying magnetic field angle and out-of-plane electric field strength. We find that superconductivity in bilayer MoTe$_2$ exhibits a two-fold symmetry with an upper critical field maxima occurring along the b-axis and minima along the a-axis. The two-fold rotational symmetry remains robust throughout the entire superconducting region and ferroelectric hysteresis loop. Our experimental observations of the spin-orbit coupling strength (up to 16.4 meV) agree with the spin texture and spin splitting from first-principles calculations, indicating that tilted Ising spin-orbit coupling is the dominant underlying mechanism.

How to cite this publication

Zizhong Li, Apoorv Jindal, Alex Strasser, Yangchen He, Wenkai Zheng, David Graf, Takashi Taniguchi, Kenji Watanabe, Luis Balicas, Cory R. Dean, Xiaofeng Qian, Abhay N. Pasupathy, Daniel Rhodes (2024). Two-Fold Anisotropic Superconductivity in Bilayer T$_d$-MoTe$_2$. , DOI: https://doi.org/10.48550/arxiv.2409.09308.

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Publication Details

Type

Preprint

Year

2024

Authors

13

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.48550/arxiv.2409.09308

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