Bounds on decaying sterile neutrinos via magnetic dipole moment from COB intensity

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Hauptverfasser: Howlader, Hriditi, Mohapatra, Vivekanand, Nayak, Alekha C., Srivastava, Tripurari
Format: Preprint
Veröffentlicht: 2025
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author Howlader, Hriditi
Mohapatra, Vivekanand
Nayak, Alekha C.
Srivastava, Tripurari
author_facet Howlader, Hriditi
Mohapatra, Vivekanand
Nayak, Alekha C.
Srivastava, Tripurari
contents A recent observation by Long Range Reconnaissance Imager (LORRI) mounted on NASA's New Horizons yielded the most accurate measurement of the cosmic optical background (COB). The reported COB intensity is $11.16\pm 1.35$ $\mathrm{nW/m^2/sr}$ at a pivot wavelength $ λ_{piv} = 0.608 \, μ\mathrm{m}$ observed in the range \( 0.4 \, μ\mathrm{m} \lesssim λ\lesssim 0.9 \, μ\mathrm{m} \). After subtracting the measured intensity from the deep Hubble Space Telescope count, diffused galactic light, and scattered light from bright star foregrounds, an anomalous intensity of $2.99 \pm 2.03~\mathrm{nW/m^2/sr}$ has been found. We considered radiatively decaying sterile neutrinos of keV mass scale, as dark matter candidate, that could contribute to this anomalous reported intensity. Using this, we derive upper bounds on the sterile-to-sterile transition magnetic moment. We find that sterile neutrinos with mass of $\mathcal{O}(\rm keV)$ scale take values of the transition magnetic moment in the range $ 3\times 10^{-13}\,\rm eV^{-1} - 10^{-9}\,\rm eV^{-1}$ to explain the anomalous intensity of $2.99\pm 2.03\,\rm nW/m^2/sr$. % Future experiments such as, Cosmological Advanced Survey Telescope for Optical-UV Research (CASTOR), James Web Space Telescope (JWST), and Spectro-Photometer for the history of the Universe, Epoch of Reionization, and Ices Explorer (SPHEREx) might help us derive a better bound on the sterile neutrinos.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03328
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Bounds on decaying sterile neutrinos via magnetic dipole moment from COB intensity
Howlader, Hriditi
Mohapatra, Vivekanand
Nayak, Alekha C.
Srivastava, Tripurari
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
A recent observation by Long Range Reconnaissance Imager (LORRI) mounted on NASA's New Horizons yielded the most accurate measurement of the cosmic optical background (COB). The reported COB intensity is $11.16\pm 1.35$ $\mathrm{nW/m^2/sr}$ at a pivot wavelength $ λ_{piv} = 0.608 \, μ\mathrm{m}$ observed in the range \( 0.4 \, μ\mathrm{m} \lesssim λ\lesssim 0.9 \, μ\mathrm{m} \). After subtracting the measured intensity from the deep Hubble Space Telescope count, diffused galactic light, and scattered light from bright star foregrounds, an anomalous intensity of $2.99 \pm 2.03~\mathrm{nW/m^2/sr}$ has been found. We considered radiatively decaying sterile neutrinos of keV mass scale, as dark matter candidate, that could contribute to this anomalous reported intensity. Using this, we derive upper bounds on the sterile-to-sterile transition magnetic moment. We find that sterile neutrinos with mass of $\mathcal{O}(\rm keV)$ scale take values of the transition magnetic moment in the range $ 3\times 10^{-13}\,\rm eV^{-1} - 10^{-9}\,\rm eV^{-1}$ to explain the anomalous intensity of $2.99\pm 2.03\,\rm nW/m^2/sr$. % Future experiments such as, Cosmological Advanced Survey Telescope for Optical-UV Research (CASTOR), James Web Space Telescope (JWST), and Spectro-Photometer for the history of the Universe, Epoch of Reionization, and Ices Explorer (SPHEREx) might help us derive a better bound on the sterile neutrinos.
title Bounds on decaying sterile neutrinos via magnetic dipole moment from COB intensity
topic Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2502.03328