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Universality of gravitational radiation from magnetar magnetospheres

Universality of gravitational radiation from magnetar magnetospheres

来源:Arxiv_logoArxiv
英文摘要

The intense magnetic fields inferred from magnetars suggest they may be strong gravitational-wave emitters. Although emissions due to hydromagnetic deformations are more promising from a detection standpoint, exterior fields also contribute a strain. However, numerical evidence suggests that the free energy of stable magnetospheric solutions cannot exceed a few tens of percent relative to the potential state, implying that the gravitational-wave luminosity cannot differ significantly between models. This prompts `universality', in the sense that the strain provides a direct probe of the near-surface field without being muddied by magnetospheric currents. Using a suite of three-dimensional, force-free, general-relativistic solutions for dipole and dipole-plus-quadrupole fields, we find that space-based interferometers may enable marginal detections out to $\lesssim$ kpc distances for slowly-rotating magnetars with fields of $\gtrsim 10^{15}$ G.

Arthur G. Suvorov、Petros Stefanou、José A. Pons

天文学物理学

Arthur G. Suvorov,Petros Stefanou,José A. Pons.Universality of gravitational radiation from magnetar magnetospheres[EB/OL].(2025-07-19)[2025-08-10].https://arxiv.org/abs/2507.14634.点此复制

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