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The Thousand-Pulsar-Array programme on MeerKAT XV: A comparison of the radio emission properties of slow and millisecond pulsars

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arxiv 2407.06836 v1 pith:NANOX7HW submitted 2024-07-09 astro-ph.HE

The Thousand-Pulsar-Array programme on MeerKAT XV: A comparison of the radio emission properties of slow and millisecond pulsars

classification astro-ph.HE
keywords pulsarsmspsradioemissionpropertiesslowdatadensity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use data from the MeerTime project on the MeerKAT telescope to ask whether the radio emission properties of millisecond pulsars (MSPs) and slowly rotating, younger pulsars (SPs) are similar or different. We show that the flux density spectra of both populations are similarly steep, and the widths of MSP pulsar profiles obey the same dependence on the rotational period as slow pulsars. We also show that the polarization of MSPs has similar properties to slow pulsars. The commonly used pseudo-luminosity of pulsars, defined as the product of the flux density and the distance squared, is not appropriate for drawing conclusions about the relative intrinsic radio luminosity of SPs and MSPs. We show that it is possible to scale the pseudo-luminosity to account for the pulse duty cycle and the solid angle of the radio beam, in such a way that MSPs and SPs do not show clear differences in intrinsic luminosity. The data, therefore, support common emission physics between the two populations in spite of orders of magnitude difference in their period derivatives and inferred, surface, dipole magnetic field strengths.

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Cited by 2 Pith papers

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  1. A Square Kilometre Array Pulsar Census

    astro-ph.HE 2026-07 conditional novelty 5.5

    Composite SKA-Low + Mid Band 1/2 all-sky surveys with AA* yield ~10k slow pulsars and ~800 MSPs; AA4 yields ~20% more, rising to ~1300 MSPs if Mid coverage is broadened.

  2. Galactic Centre Pulsars with the SKAO

    astro-ph.HE 2026-07 accept novelty 4.0

    Updated SKA-MID sensitivity and multi-beam search strategies can detect up to ~84% of Galactic Centre pulsars (and ~60% of MSPs) under magnetar-like scattering, unlocking precision tests around Sgr A*.