优先级 60 · 磁星 / 软伽马重复暴 SGR · 引力波电磁对应体
New Universal Relations for Magnetized Neutron Stars
磁化中子星的新普适关系
B. N. Jayawiguna (High Energy Physics Theory Group, Department of Physics, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand; Department of Physics, University of Virginia, Charlottesville, Virginia 22904, USA), S. Ajith (Department of Physics, University of Virginia, Charlottesville, Virginia 22904, USA), T. Katagiri (Dipartimento di Fisica, Sapienza Università di Roma, Piazzale Aldo Moro 5, 00185, Roma, Italy; INFN, Sezione di Roma, Piazzale Aldo Moro 2, 00185, Roma, Italy) et al.
原文摘要Abstract
Unlike the neutron-star mass--radius relation, which depends sensitively on the internal stellar structure through the equation of state of dense nuclear matter, certain neutron-star properties obey approximately universal relations that exhibit only weak dependence on the equation of state. In this paper, we explore new universal relations for magnetized neutron stars. We focus on a purely poloidal dipolar magnetic-field configuration and treat the effects of the magnetic field perturbatively to second order in the field strength. After appropriately normalizing the relevant quantities by the stellar mass and the magnetic-field strength at the pole, we first identify an exact universal relation between the magnetic dipole moment and stellar compactness. We then find approximate universal relations among the magnetic dipole moment, magnetically-induced stellar quadrupole moment, and ellipticity, with fractional variations due to the equation of state at the level of O(10%). We support these numerical findings with analytic estimates for Newtonian polytropes, which reproduce the observed behavior. Among the newly discovered relations, the one connecting the magnetic dipole moment and stellar quadrupole moment may be particularly useful for the analysis of gravitational-wave signals from binaries containing magnetized neutron stars.
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AI-generated · 以原文为准
亮点首次给出磁偶极矩-致密性的精确解析关系;磁偶极矩、四极矩和椭率之间的近似普适关系对 EoS 依赖仅约 10%,且与引力波相位中二者同阶进入,可用于磁化双中子星参数推断。
预印本 2026-08-07 · 收录 2026-08-20