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2025 年 7 月 10 日 星期四 · 数据截至 arXiv / ADS 最新收录日

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优先级 20 · 多信使触发与联合

Measuring the high-energy neutrino sky using the deep-valley neutrino observatory TAMBO

C. A. Argüelles (Department of Physics & Laboratory for Particle Physics and Cosmology, Harvard University), J. Bazo (Sección Física, Departamento de Ciencias, Pontificia Universidad Católica del Perú), C. Briceño (Electrical and Mechatronic Department, Universidad de Ingenieria y Tecnologia), et al.

原文摘要Abstract

Although the field of neutrino astronomy has blossomed in the past decade, physicists have struggled to fully map the high-energy neutrino sky. The Tau Air-shower Mountain-Based Observatory (TAMBO), a mountain-based neutrino observatory, aims to solve that issue—and find clues of new physics along the way.

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TAMBO:深谷中微子天文台 · TAMBO利用深谷地形探测PeV至EeV的τ中微子,以低成本实现高纯度天文中微子源搜寻与新物理检验。

预印本 2025-07-10 · 接收 2026-06-08 · 刊出 2026-07-15 · 收录 2026-07-22

优先级 10 · 高能暂现天体 · 基础物理应用08-20 补录

Probing fundamental constant oscillation in the Galactic Center with S-Star Spectroscopy

Bai, Zhaoyu, Cardoso, Vitor, Chen, Yifan, et al.

原文摘要Abstract

Astrophysical spectroscopy provides a powerful probe of spacetime variations of fundamental constants, as atomic and ionic emission and absorption lines depend sensitively on the fine-structure constant. In particular, coherent temporal oscillations induced by an ultralight scalar background produce characteristic, time-resolved signatures that can be robustly disentangled from intrinsic variability. In the Galactic Center, such scalar backgrounds can be substantially enhanced, either through the formation of dense scalar clouds powered by black hole rotational energy extraction or as ultralight scalar dark matter forming a soliton-like core. These scalar configurations generically induce oscillations of the fine-structure constant, with periods set by the scalar mass and spatial profiles determined by the scalar wavefunction and its coupling to the electromagnetic sector. We show that precise, time-resolved spectroscopy of S-stars orbiting the supermassive black hole Sgr A^* provides a sensitive test of these effects, enabling constraints on quadratic scalar-photon couplings in the exceptionally high boson-density environment of the Galactic Center.

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利用S星光谱探测银河系中心基本常数振荡 · 本文提出通过Sgr A*周围S星的高精度时间分辨光谱,探测超轻标量场引起的精细结构常数振荡,从而约束标量-光子耦合。

预印本 2025-07-10 · 接收 2026-06-16 · 刊出 2026-08-05 · 收录 2026-08-20