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February 7, 2018Physical review. D/Physical review. D.60 citationsOpen Access

Searching for axion stars and Q-balls with a terrestrial magnetometer network

DKDerek F. Jackson KimballCalifornia State University, East BayDBDmitry BudkerGSI Helmholtz Centre for Heavy Ion ResearchJEJoshua EbyStockholm University

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Abstract

Light (pseudo-) scalar fields are promising candidates to be the dark matter in the Universe. Under certain initial conditions in the early Universe and/or with certain types of self-interactions, they can form compact dark-matter objects such as axion stars or Q-balls. Direct encounters with such objects can be searched for by using a global network of atomic magnetometers. It is shown that for a range of masses and radii not ruled out by existing observations, the terrestrial encounter rate with axion stars or Q-balls can be sufficiently high (at least once per year) for a detection. Furthermore, it is shown that a global network of atomic magnetometers is sufficiently sensitive to pseudoscalar couplings to atomic spins so that a transit through an axion star or Q-ball could be detected over a broad range of unexplored parameter space.

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Cite This Study

Kimball et al. (2018) studied this question.

synapsesocial.com/papers/69d8f85b6715230d10bedd67https://doi.org/10.1103/physrevd.97.043002
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