2015A&A...578A..52D


Query : 2015A&A...578A..52D

2015A&A...578A..52D - Astronomy and Astrophysics, volume 578A, 52-52 (2015/6-1)

Properties and observability of glitches and anti-glitches in accreting pulsars.

DUCCI L., PIZZOCHERO P.M., DOROSHENKO V., SANTANGELO A., MEREGHETTI S. and FERRIGNO C.

Abstract (from CDS):

Several glitches have been observed in young, isolated radio pulsars, while a clear detection in accretion-powered X-ray pulsars is still lacking. We use the Pizzochero snowplow model for pulsar glitches as well as starquake models to determine for the first time the expected properties of glitches in accreting pulsars and their observability. Since some accreting pulsars show accretion-induced long-term spin-up, we also investigate the possibility that anti-glitches occur in these stars. We find that glitches caused by quakes in a slow accreting neutron star are very rare and their detection extremely unlikely. On the contrary, glitches and anti-glitches caused by a transfer of angular momentum between the superfluid neutron vortices and the non-superfluid component may take place in accreting pulsars more often. We calculate the maximum jump in angular velocity of an anti-glitch and we find that it is expected to be ΔΩa–gl≃10–5-10–4rad/s. We also note that since accreting pulsars usually have rotational angular velocities lower than those of isolated glitching pulsars, both glitches and anti-glitches are expected to have long rise and recovery timescales compared to isolated glitching pulsars, with glitches and anti-glitches appearing as a simple step in angular velocity. Among accreting pulsars, we find that GX 1+4 is the best candidate for the detection of glitches with currently operating X-ray instruments and future missions such as the proposed Large Observatory for X-ray Timing (LOFT).

Abstract Copyright:

Journal keyword(s): accretion, accretion disks - dense matter - stars: neutron - X-rays: binaries - X-rays: individuals: GX 1+4

Simbad objects: 14

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Number of rows : 14
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 [HP99] 946 Be* 05 20 30.9009 -69 31 54.999   14.41 14.40     O8e 61 0
2 NAME Vela Pulsar Psr 08 35 20.65525 -45 10 35.1545     15.10     ~ 2273 1
3 V* GP Vel HXB 09 02 06.8608812864 -40 33 16.899168060 6.85 7.37 6.87 6.31 6.05 B0.5Ia 1479 0
4 V* V779 Cen HXB 11 21 15.0920532528 -60 37 25.630264596   14.4 12.27     O9III/Veq 1072 0
5 4U 1416-62 HXB 14 21 12.8 -62 41 54   17.9 17.2     B1Ve 146 0
6 V* KZ TrA LXB 16 32 16.79 -67 27 39.3 17.40 18.60 18.5     ~ 571 1
7 V* HZ Her LXB 16 57 49.8110126616 +35 20 32.486555472 11.90 14.89 13.63 13.88   B3/6ep 2052 0
8 NAME OAO 1657-41 HXB 17 00 48.884 -41 39 21.46           Ofpe/WN9 238 0
9 V* V2116 Oph Sy* 17 32 02.1532435416 -24 44 44.129169096   20.78 18.4     M6IIIe 682 1
10 3FHL J1746.2-2852 LXB 17 44 33.09 -28 44 27.0           ~ 524 0
11 4U 1907+09 HXB 19 09 37.1382681824 +09 49 55.279554289   19.41 16.35 14.40 12.53 O8.5Iab 333 1
12 2MASS J19493548+3012317 HXB 19 49 35.4841147968 +30 12 31.775979852   15.16 14.22 13.53 12.88 B0Ve 165 1
13 V* V2246 Cyg HXB 20 32 15.2749858128 +37 38 14.843024844   22.16 19.41 17.32 15.18 B0Ve 426 0
14 GSC 03588-00834 HXB 21 03 35.7100848936 +45 45 05.568751692   15.34 14.20 13.49 12.75 B0Ve 177 0

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2023.09.23-07:27:50

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