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Axion Emission Can Explain a New Hard X-ray Excess from Nearby Isolated Neutron Stars
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Axion Emission Can Explain a New Hard $X$-ray Excess from Nearby Isolated Neutron Stars
abstract
Axions may be produced thermally inside the cores of neutron stars (NSs), escape the stars due to their feeble interactions with matter, and subsequently convert into X-rays in the magnetic fields surrounding the stars. We show that a recently-discovered excess of hard X-ray emission in the 2 - 8 keV energy range from the nearby Magnificent Seven isolated NSs could be explained by this emission mechanism. These NSs are unique in that they had previously been expected to only produce observable flux in the UV and soft X-ray bands from thermal surface emission at temperatures ~100 eV. No conventional astrophysical explanation of the Magnificent Seven hard X-ray excess exists at present. We show that the hard X-ray excess may be consistently explained by an axion-like particle with mass $m_a \lesssim 2 \times 10^{-5}$ eV and $g_{a\gamma\gamma} \times g_{ann} \in (2 \times 10^{-21}, 10^{-18})$ GeV$^{-1}$ at 95\% confidence, accounting for both statistical and theoretical uncertainties, where $g_{a\gamma\gamma}$ ($g_{ann}$) is the axion-photon (axion-neutron) coupling constant.
Forward citations
Cited by 2 Pith papers
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Axion lines from nuclear de-excitations in galactic stellar populations
No 14.4 keV axion line from 57Fe de-excitations is seen by NuSTAR toward M87, M82, M31, or the Galactic Center, yielding |g_ann x g_aγγ| < 1.1e-22 GeV^-1 for m_a < 1e-10 eV.
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Axion-photon conversion in transient compact stars: Systematics, constraints, and opportunities
Analytical expressions for ALP-photon conversion in transient compact stars yield an updated bound g_aγ < 5×10^{-12} GeV^{-1} for m_a ≲ 10^{-9} eV from SN 1987A, plus sensitivity forecasts for future Galactic SN and N...
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