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May 8, 2026Journal of High Energy Physics2 citationsOpen Access

Refractive neutrino masses in the solar DM halo: can the dark-LMA solution be revived?

SCSusobhan ChattopadhyayADAmol Dighe

Key Points

  • This research investigates how interactions with ultralight dark matter affect neutrino masses and propagation, potentially reviving the dark-LMA solution.
  • Developed a model with two sterile neutrinos and an ultralight scalar field as dark matter.
  • Diagonalized a 5 × 5 Hamiltonian for neutrino propagation using a unitary matrix and estimated the electron neutrino survival probability.
  • Averaged survival probabilities over different neutrino production regions to assess effects in the context of the dark matter halo.
  • Showed a strong dependence of electron neutrino survival probability on production regions for fixed energy.
  • Identified conditions under which the dark-LMA solution could be revisited based on spectral features.
  • Established bounds on halo parameters by comparing with solar data and active-sterile neutrino conversions.

Abstract

A bstract Neutrinos can acquire “refractive masses” as a consequence of their interactions with ultralight dark matter (DM). We explore a model with two additional sterile neutrinos and an ultralight scalar field which acts as DM and interacts with all five neutrinos. We show that the effective 5 × 5 Hamiltonian for neutrino propagation can be diagonalized by a unitary matrix ℙ parametrized by 6 mixing angles and 1 complex phase. When active-sterile mixing angles are small, we identify a parametrization for ℙ that reduces neutrino propagation inside the Sun to a two-flavor problem for a uniform DM background. In the presence of a DM halo inside the Sun, however, the propagation shows additional features in the region of halo dominance. We derive approximate analytic expressions for the electron neutrino survival probability in the presence of the DM halo. We show that this probability has a strong dependence on the neutrino production region even for a fixed energy, and numerically calculate the effects of averaging over these production regions. Comparisons with the re-interpreted solar data, in the light of possible active-sterile neutrino conversions, would allow putting bounds on the halo parameters. Finally, we examine the possibility of reviving the dark-LMA solution in this context, where the survival probability spectrum can have attractive features aligned with the measurements at Super-Kamiokande.

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Cite This Study

Chattopadhyay et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ef7bfa21ec5bbf07401https://doi.org/10.1007/jhep05(2026)053
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