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The Velocity Distribution of Isolated Radio Pulsars

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arxiv astro-ph/0106159 v2 pith:RMKFMLET submitted 2001-06-08 astro-ph

classification astro-ph
keywords birthdistributionpulsarsradiovelocitymodelspopulationpulsar
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(Abridged) We infer the velocity distribution of radio pulsars by modelling their birth, evolution, and detection in large-scale 0.4 GHz pulsar surveys, and by comparing model distributions of measurable pulsar properties with survey data using a likelihood function. We test models that characterize a population's birth rate, luminosity, shutoff of radio emission, birth locations, and birth velocities. We infer that the radio beam luminosity (i) is comparable to the energy flux of relativistic particles in models for spin-driven magnetospheres, signifying that radio emission losses reach nearly 100% for the oldest pulsars; and (ii) scales approximately as sqrt(Edot) which, in magnetosphere models, is proportional to the voltage drop available for acceleration of particles. We find that a two-component velocity distribution with characteristic velocities of 90 km/s and 500 km/s is greatly preferred to any one-component distribution. We explore some consequences of the preferred birth velocity distribution: (i) roughly 50% of pulsars in the solar neighborhood will escape the Galaxy, while ~15% have velocities greater than 1000 km/s; (ii) an important low-velocity population exists that increases the fraction of neutron stars retained by globular clusters and is consistent with the number of old objects that accrete from the interstellar medium; (iii) under standard assumptions for supernova remnant expansion and pulsar spin-down, ~10% of pulsars younger than 20 kyr will appear to lie outside of their host remnants. Finally, we comment on the ramifications of our birth velocity distribution for binary survival and the population of inspiraling binary neutron stars relevant to some GRB models and potential sources for LIGO.

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Cited by 3 Pith papers

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    astro-ph.HE 2024-11 conditional novelty 8.0 of 10

    A bright long-period radio transient shows periodic X-ray emission at the same 44.2-minute period, making it the first LPT detected in X-rays and establishing a new class of hour-scale periodic X-ray transients.

  2. Constraints on Binarity for the Extreme Oe Variable Star AzV 493

    astro-ph.SR 2026-06 unverdicted novelty 5.0 of 10

    Chandra non-detection and heterogeneous RV data leave AzV 493's putative highly eccentric companion unconfirmed, with only L_X < 2.5e33 erg/s and conditional mass lower limits if RV variations are real.

  3. Dependences of radio pulsar parameters on the bimodal kick mode

    astro-ph.HE 2026-06 unverdicted novelty 5.0 of 10

    Pulsars that received weak natal kicks tend to have weaker magnetic fields, and no fast-kicked pulsar with a field below ~10^11 G appears in the sample.

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