Searches for exotic spin-dependent interactions with spin sensors

Fuente: arXiv
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Autori principali: Jiang, Min, Su, Haowen, Chen, Yifan, Jiao, Man, Huang, Ying, Wang, Yuanhong, Rong, Xing, Peng, Xinhua, Du, Jiangfeng
Natura: Preprint
Pubblicazione: 2024
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author Jiang, Min
Su, Haowen
Chen, Yifan
Jiao, Man
Huang, Ying
Wang, Yuanhong
Rong, Xing
Peng, Xinhua
Du, Jiangfeng
author_facet Jiang, Min
Su, Haowen
Chen, Yifan
Jiao, Man
Huang, Ying
Wang, Yuanhong
Rong, Xing
Peng, Xinhua
Du, Jiangfeng
contents Numerous theories have postulated the existence of exotic spin-dependent interactions beyond the Standard Model of particle physics. Spin-based quantum sensors, which utilize the quantum properties of spins to enhance measurement precision, emerge as powerful tools for probing these exotic interactions. These sensors encompass a wide range of technologies, such as optically pumped magnetometers, atomic comagnetometers, spin masers, nuclear magnetic resonance, spin amplifiers, and nitrogen-vacancy centers. These technologies stand out for their ultrahigh sensitivity, compact tabletop design, and cost-effectiveness, offering complementary approaches to the large-scale particle colliders and astrophysical observations. This article reviews the underlying physical principles of various spin sensors and highlights the recent theoretical and experimental progress in the searches for exotic spin-dependent interactions with these quantum sensors. Investigations covered include the exotic interactions of spins with ultralight dark matter, exotic spin-dependent forces, electric dipole moment, spin-gravity interactions, and among others. Ongoing and forthcoming experiments using advanced spin-based sensors to investigate exotic spin-dependent interactions are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2412_03288
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Searches for exotic spin-dependent interactions with spin sensors
Jiang, Min
Su, Haowen
Chen, Yifan
Jiao, Man
Huang, Ying
Wang, Yuanhong
Rong, Xing
Peng, Xinhua
Du, Jiangfeng
Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Atomic Physics
Numerous theories have postulated the existence of exotic spin-dependent interactions beyond the Standard Model of particle physics. Spin-based quantum sensors, which utilize the quantum properties of spins to enhance measurement precision, emerge as powerful tools for probing these exotic interactions. These sensors encompass a wide range of technologies, such as optically pumped magnetometers, atomic comagnetometers, spin masers, nuclear magnetic resonance, spin amplifiers, and nitrogen-vacancy centers. These technologies stand out for their ultrahigh sensitivity, compact tabletop design, and cost-effectiveness, offering complementary approaches to the large-scale particle colliders and astrophysical observations. This article reviews the underlying physical principles of various spin sensors and highlights the recent theoretical and experimental progress in the searches for exotic spin-dependent interactions with these quantum sensors. Investigations covered include the exotic interactions of spins with ultralight dark matter, exotic spin-dependent forces, electric dipole moment, spin-gravity interactions, and among others. Ongoing and forthcoming experiments using advanced spin-based sensors to investigate exotic spin-dependent interactions are discussed.
title Searches for exotic spin-dependent interactions with spin sensors
topic Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Atomic Physics
url https://arxiv.org/abs/2412.03288