arXiv · 2512.21955
Superradiant and dynamical spin-down of neutron stars with gravitational wave implications
Abstract
Neutron stars such as pulsars and magnetars lose angular momentum primarily through electromagnetic dipole radiation, gravitational waves, $r$-mode oscillation, and also affected by fallback accretion processes. However, anomalous spin variations, particularly sudden enhanced spin-down rates, indicate additional spin-down mechanisms. We propose superradiant spin-down as a potential explanation for these events. By modelling the interplay between conventional and superradiant spin-down channels, we evaluate their impact on neutron star rotational evolution. We also discuss gravitational-wave emission produced by quadrupole deformation, $r$-mode oscillations, and axion-induced bosonic clouds around an isolated neutron star, highlighting their potential as distinct multimessenger probes in upcoming detectors.
Explore related subjects
Keep this discovery
Indra Kumar Banerjee, Sandeep Chatterjee, Biswarup Das, Ujjal Kumar Dey. 2025-12-26. Superradiant and dynamical spin-down of neutron stars with gravitational wave implications. https://arxiv.org/abs/2512.21955
Cite the original work for its findings. Save a collection to share your selection of sources.