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2025 年 8 月 14 日 星期四 · 数据截至 arXiv / ADS 最新收录日
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优先级 20 · 高能暂现天体 · 超新星中微子 · 暗物质

Shedding light on dark matter spikes through refractive neutrino masses

Pompa, Federica, Sen, Manibrata

原文摘要Abstract

The origin of neutrino mass remains an open question in particle physics. One intriguing possibility is that neutrinos are massless in vacuum but acquire an effective refractive mass through interactions with ultralight dark matter during propagation. We investigate the capability of the upcoming Deep Underground Neutrino Experiment (DUNE) to probe such refractive masses using the time-of-flight delays of neutrinos from a galactic core-collapse supernova. Our analysis shows that DUNE can set competitive bounds on the refractive neutrino mass, with sensitivity significantly enhanced if neutrinos traverse a dark matter density spike near the Galactic Center. In particular, we quantify how the presence of a spike modifies the projected limits, demonstrating that supernova neutrino observations at DUNE provide a powerful and novel avenue to test both the nature of neutrino masses and the distribution of dark matter in the innermost regions of the Milky Way.

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通过折射中微子质量揭示暗物质尖峰 · 本文研究DUNE实验通过银河系超新星中微子飞行时间延迟探测折射中微子质量,并发现暗物质尖峰可显著增强其灵敏度,为检验中微子质量和暗物质分布提供新途径。

预印本 2025-08-14 · 刊出 2026-05-26 · 收录 2026-08-20