Pulsar glitch in a strangeon star model – III. The recovery

Author:

Lai X Y12ORCID,Wang W H3,Yuan J P4,Lu R P5,Yue H5,Xu R X67ORCID

Affiliation:

1. Department of Physics and Astronomy, Hubei University of Education , Wuhan 430205, China

2. Research Center for Astronomy, Hubei University of Education , Wuhan 430205, China

3. College of Mathematics and Physics, Wenzhou University , Wenzhou 325035, China

4. Xinjiang Astronomical Observatory, Chinese Academy of Sciences , Urumqi 830011, XinJiang, China

5. School of Earth and Space Sciences, Peking University , Beijing 100871, China

6. School of Physics, Peking University , Beijing 100871, China

7. Kavli Institute for Astronomy and Astrophysics, Peking University , Beijing 100871, China

Abstract

ABSTRACT Strangeon star model has passed various observational tests, such as the massive pulsars and the tidal deformability during binary mergers. Pulsar glitch, as a useful probe for studying the interior structure of pulsars, has also been studied in strangeon star model in our previous papers, including the recovery coefficient, the waiting time of glitches, and glitch activity. In this paper, the recovery process of a glitch is described in the strangeon star model, based on the starquake picture established before (in Paper I). After the starquake, the inner motion of the stellar matter would reduce the tangential pressure in the cracked places at the equatorial plane. The recovery (increase) of the tangential pressure would be achieved by a viscous flow towards the cracked places at equatorial plane, which leads to the exponential recovery of the spin frequency. A uniform viscous flow can reproduce the single exponential decay observed in some glitches, and the viscous time-scale τ and the depth h of the cracking place below the surface can be fitted by the recovery data. It is found that h increases with glitch size Δν/ν, which is expected in the glitch scenario of strangeon stars. The magnitude of the recovery predicted in this recovery model is also consistent with that derived from observations. The single exponential decay reproduced by a uniform viscous flow can be generalized to two or more exponentials by the multicomponent of viscous flows.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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