Constraints on Velocity and Spin Dependent Exotic Interaction at the Millimeter Scale with a Diamagnetic-levitated Force Sensor

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Hauptverfasser: Tian, Kenan, Sheng, Yuanji, Li, Rui, Wang, Lei, Yin, Peiran, Lin, Shaochun, Long, Dingjiang, Duan, Chang-Kui, Kong, Xi, Huang, Pu, Du, Jiangfeng
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Veröffentlicht: 2025
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author Tian, Kenan
Sheng, Yuanji
Li, Rui
Wang, Lei
Yin, Peiran
Lin, Shaochun
Long, Dingjiang
Duan, Chang-Kui
Kong, Xi
Huang, Pu
Du, Jiangfeng
author_facet Tian, Kenan
Sheng, Yuanji
Li, Rui
Wang, Lei
Yin, Peiran
Lin, Shaochun
Long, Dingjiang
Duan, Chang-Kui
Kong, Xi
Huang, Pu
Du, Jiangfeng
contents Light bosons, beyond the standard model and as prominent candidates for dark matter, can mediate velocity and spin dependent exotic interaction between electron spins and nucleons. At short ranges, it remains an open challenge to test this exotic interaction with high precision. Here, we present a method based on diamagnetic-levitated force sensor to detect the exotic interaction at the millimeter scale. Improved constraints for the coupling $g_A^e g_V^N$ are established, within the force range spanning from 0.15 mm to 1.5 mm. And the constraint $|g_A^e g_V^N| \leq 4.39 \times10^{-26}$ at $λ$ = 0.5 mm at the $95 \%$ confidence level, significantly surpasses previous results by more than three orders of magnitude. The diamagnetic levitation force measurement system developed here can also be repurposed to probe other exotic spin-dependent interactions, such as the exotic spin-spin interaction. This system provides a platform for the exploration of dark matter.
format Preprint
id arxiv_https___arxiv_org_abs_2503_20270
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Constraints on Velocity and Spin Dependent Exotic Interaction at the Millimeter Scale with a Diamagnetic-levitated Force Sensor
Tian, Kenan
Sheng, Yuanji
Li, Rui
Wang, Lei
Yin, Peiran
Lin, Shaochun
Long, Dingjiang
Duan, Chang-Kui
Kong, Xi
Huang, Pu
Du, Jiangfeng
High Energy Physics - Phenomenology
Quantum Physics
Light bosons, beyond the standard model and as prominent candidates for dark matter, can mediate velocity and spin dependent exotic interaction between electron spins and nucleons. At short ranges, it remains an open challenge to test this exotic interaction with high precision. Here, we present a method based on diamagnetic-levitated force sensor to detect the exotic interaction at the millimeter scale. Improved constraints for the coupling $g_A^e g_V^N$ are established, within the force range spanning from 0.15 mm to 1.5 mm. And the constraint $|g_A^e g_V^N| \leq 4.39 \times10^{-26}$ at $λ$ = 0.5 mm at the $95 \%$ confidence level, significantly surpasses previous results by more than three orders of magnitude. The diamagnetic levitation force measurement system developed here can also be repurposed to probe other exotic spin-dependent interactions, such as the exotic spin-spin interaction. This system provides a platform for the exploration of dark matter.
title Constraints on Velocity and Spin Dependent Exotic Interaction at the Millimeter Scale with a Diamagnetic-levitated Force Sensor
topic High Energy Physics - Phenomenology
Quantum Physics
url https://arxiv.org/abs/2503.20270