1998/02/12 by A. Treves, M. Colpi, Monica Colpi +3 · 2 citations
Earth and Planetary Sciences · Physics and Astronomy · #Accretion (finance) #Astronomy #Astrophysics #Classical mechanics #Galaxy #Geology #High-pressure geophysics and materials #Interstellar medium #Magnetic field #Neutron star #Observability #Physics #Population #Propeller #Pulsar #Pulsars and Gravitational Waves Research #ROSAT #Rotational energy #Stars #Stellar, planetary, and galactic studies #astro-ph
paper · pdf · doi:10.1016/s0920-5632(98)00219-9
published in Nuclear Physics B - Proceedings Supplements 69(1-3), 249-252 (Elsevier BV) · 5 pages including 2 postscript figures, to appear in the proceedings of Rome BeppoSax-RossiXTE meeting
arxiv created 1998/02/12 · openalex publication_date 1999/01/01 · arxiv updated 2009/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
Old neutron stars (ONSs) which have radiated away their internal and rotational energy may still shine if accreting the interstellar medium. Rather stringent limits from the analysis of ROSAT surveys indicate that most optimistic predictions on ONSs observability are in excess of a factor as large as ∼ 100. Here we explore two possible evolutionary scenarios that may account for the paucity of ONSs. In the first it is assumed that the ONS population is not too fast (V<100 km s-1) and that magnetic field decay guides the evolution. In the second, NSs move with high speed (V>100 km s-1) and preserve their magnetic field at birth. We find that according to the former scenario most ONSs are now in the propeller phase, while in the latter nearly all ONSs are silent, dead pulsars.