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    Black holes and neutron stars in massive Hellings-Nordtvedt theory

    Zhe Luo1,2, Liang Liang1,2, Zhong-Xi Yu3,*, Hong-Da Lyu4,†, Shoulong Li1,2,‡, and Hongwei Yu1,2,§

    • 1Department of Physics, Key Laboratory of Low Dimensional Quantum Structures and Quantum Control of Ministry of Education, and Institute of Interdisciplinary Studies, Hunan Normal University, Changsha, 410081, China
    • 2Hunan Research Center of the Basic Discipline for Quantum Effects and Quantum Technologies, Hunan Normal University, Changsha 410081, China
    • 3College of Physics and Electronic Information Engineering, Jining Normal University, Wulanchabu, 012000, China
    • 4Key Laboratory of Particle Physics and Particle Irradiation (MOE), Institute of Frontier and Interdisciplinary Science, Shandong University, Qingdao, Shandong, 266237, China

    • *Contact author: zhongxiyu@yau.edu.cn
    • †Contact author: hongdalyu@sdu.edu.cn
    • ‡Contact author: shoulongli@hunnu.edu.cn
    • §Contact author: hwyu@hunnu.edu.cn

    Phys. Rev. D 114, 024031 – Published 13 July, 2026

    DOI: https://doi.org/10.1103/qk33-vb4j

    Abstract

    Hellings-Nordtvedt theory is a vector-tensor theory in which a vector field Aμ is nonminimally coupled to curvature through two independent interactions A2R and AμAνRμν. When supplemented by a potential whose zero-energy minimum occurs at nonzero A2, the restricted AμAνRμν sector is known to admit black-hole and neutron-star solutions with a global monopolelike asymptotic vacuum structure. We examine whether this structure is a generic consequence of the nonzero vector vacuum or instead relies on the special Ricci-tensor coupling. By analyzing the field equations near spatial infinity, we show that the asymptotic vacuum condition is incompatible with generic nonzero values of both couplings and instead selects two allowed single-coupling sectors. The AμAνRμν sector reproduces the known global monopolelike asymptotics, whereas the A2R sector admits an asymptotically flat Schwarzschild metric with a nontrivial radial vector field. We further compute the Noether mass in the A2R sector, derive the corresponding Solar-System constraints, and construct neutron-star configurations. Although the weak-field deviation is constrained to be small, neutron stars can still show appreciable departures from both general relativity and the Ricci-tensor-coupling sector in their masses, radii, and moments of inertia. Our results identify that the A2R sector of massive Hellings-Nordtvedt theory as a viable and useful framework for studying strong-field compact objects with a nonzero vector vacuum while remaining compatible with weak-field tests.

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