Zero-field superconducting diode effect induced by magnetic flux in a van der Waals superconductor trigonal PtBi$_2$

Fuente: arXiv
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Main Authors: Jiang, Nan, Maeda, Masaki, Yamaguchi, Yuhi, Watanabe, Mori, Tokuda, Masashi, Takaki, Kensuke, Masaki, Sebun, Ikushima, Takumi, Koyanagi, Takayoshi, Matsubara, Masakazu, Kudo, Kazutaka, Niim, Yasuhiro
Format: Preprint
Published: 2025
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author Jiang, Nan
Maeda, Masaki
Yamaguchi, Yuhi
Watanabe, Mori
Tokuda, Masashi
Takaki, Kensuke
Masaki, Sebun
Ikushima, Takumi
Koyanagi, Takayoshi
Matsubara, Masakazu
Kudo, Kazutaka
Niim, Yasuhiro
author_facet Jiang, Nan
Maeda, Masaki
Yamaguchi, Yuhi
Watanabe, Mori
Tokuda, Masashi
Takaki, Kensuke
Masaki, Sebun
Ikushima, Takumi
Koyanagi, Takayoshi
Matsubara, Masakazu
Kudo, Kazutaka
Niim, Yasuhiro
contents The superconducting diode effect is one of the nonreciprocal transport phenomena, where the critical current depends on the current direction. This effect is typically realized in superconductors with broken spatial-inversion and time-reversal symmetry. To break the time-reversal symmetry, external magnetic fields are commonly used. Here, we demonstrate a sign-controllable superconducting diode effect under zero external magnetic field in a van der Waals superconductor trigonal PtBi$_2$. The sign of the zero-field superconducting diode effect is controlled by the poling magnetic field, that is a large magnetic field applied prior to measurements. This result indicates that trapped magnetic flux are responsible for breaking the time-reversal symmetry. Our findings highlight the crucial role of trapped magnetic flux in generating the superconducting diode effect and provide a general pathway for realizing a zero-field superconducting diode effect.
format Preprint
id arxiv_https___arxiv_org_abs_2512_05427
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Zero-field superconducting diode effect induced by magnetic flux in a van der Waals superconductor trigonal PtBi$_2$
Jiang, Nan
Maeda, Masaki
Yamaguchi, Yuhi
Watanabe, Mori
Tokuda, Masashi
Takaki, Kensuke
Masaki, Sebun
Ikushima, Takumi
Koyanagi, Takayoshi
Matsubara, Masakazu
Kudo, Kazutaka
Niim, Yasuhiro
Superconductivity
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
The superconducting diode effect is one of the nonreciprocal transport phenomena, where the critical current depends on the current direction. This effect is typically realized in superconductors with broken spatial-inversion and time-reversal symmetry. To break the time-reversal symmetry, external magnetic fields are commonly used. Here, we demonstrate a sign-controllable superconducting diode effect under zero external magnetic field in a van der Waals superconductor trigonal PtBi$_2$. The sign of the zero-field superconducting diode effect is controlled by the poling magnetic field, that is a large magnetic field applied prior to measurements. This result indicates that trapped magnetic flux are responsible for breaking the time-reversal symmetry. Our findings highlight the crucial role of trapped magnetic flux in generating the superconducting diode effect and provide a general pathway for realizing a zero-field superconducting diode effect.
title Zero-field superconducting diode effect induced by magnetic flux in a van der Waals superconductor trigonal PtBi$_2$
topic Superconductivity
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2512.05427