2021RAA....21..254L


Query : 2021RAA....21..254L

2021RAA....21..254L - Research in Astron. and astroph., 21, 254 (2021/October-0)

The isotropic energy function and formation rate of short gamma-ray bursts.

LIU Z.-Y., ZHANG F.-W. and ZHU S.-Y.

Abstract (from CDS):

Gamma-ray bursts (GRBs) are brief, intense, gamma-ray flashes in the universe, lasting from a few milliseconds to a few thousand seconds. For short gamma-ray bursts (sGRBs) with duration less than 2 seconds, the isotropic energy (E iso) function may be more scientifically meaningful and accurately measured than the luminosity (L p) function. In this work we construct, for the first time, the isotropic energy function of sGRBs and estimate their formation rate. First, we derive the L p - E p correlation using 22 sGRBs with known redshifts and well-measured spectra and estimate the pseduo redshifts of 334 Fermi sGRBs. Then, we adopt the Lynden-Bell c - method to study isotropic energy functions and formation rate of sGRBs without any assumption. A strong evolution of isotropic energy E iso ∝ (1+z)5.79 is found, which is comparable to that between L p and z. After removing effect of the cosmic evolution, the isotropic energy function can be reasonably fitted by a broken power law, which is φ({E}_{iso,0})∝{E}_{iso,0}^{-0.45} for dim sGRBs and φ({E}_{iso,0})∝{E}_{iso,0}^{-1.11} for bright sGRBs, with the break energy 4.92 x 1049 erg. We obtain the local formation rate of sGRBs is about 17.43 events Gpc-3 yr-1. If assuming a beaming angle is 6° to 26°, the local formation rate including off-axis sGRBs is estimated as ρ 0,all = 155.79 - 3202.35 events Gpc-3 yr-1.

Abstract Copyright: ©

Journal keyword(s): gamma-ray bursts: general - methods: data analysis

VizieR on-line data: <Available at CDS (J/other/RAA/21.254): table2.dat>

Status at CDS : All or part of tables of objects will not be ingested in SIMBAD.

Simbad objects: 23

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Number of rows : 23
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 Fermi bn100117879 gB 00 45 04.56 -01 35 41.7           ~ 137 0
2 Fermi bn111117510 gB 00 50 46.220 +23 00 39.22           ~ 120 0
3 GRB 100625A gB 01 03 10.98 -39 05 18.3           ~ 106 0
4 Fermi bn100206563 gB 03 08 38.94 +13 09 25.5           ~ 126 0
5 GRB 070714B gB 03 51 22.30 +28 17 51.3           ~ 216 1
6 GRB 071227A gB 03 52 31.09 -55 59 03.3           ~ 175 0
7 GRB 101219A gB 04 58 20.45 -02 32 23.1           ~ 129 0
8 GRB 061006 gB 07 24 07.660 -79 11 55.10           ~ 193 1
9 GRB 160410A gB 10 02 44.37 +03 28 42.7           ~ 56 0
10 GRB 150424A gB 10 09 13.35 -26 37 51.2           ~ 72 0
11 GRB 130603B gB 11 28 48.16 +17 04 18.2           ~ 347 0
12 Fermi bn150101641 gB 12 32 04.98 -10 56 00.7           ~ 139 1
13 GrW 170817 GWE 13 09 48.0850 -23 22 53.343           ~ 2008 0
14 Fermi bn160821937 gB 18 39 54.550 +62 23 30.35           ~ 126 0
15 GRB 080905A gB 19 10 39.10 -18 51 55.4           ~ 171 0
16 Fermi bn131004904 gB 19 44 27.20 -02 57 31.0           ~ 90 0
17 GRB 051221 gB 21 54 48.626 +16 53 27.16 19.49         ~ 351 1
18 GRB 170428A gB 22 00 12 +26 55.0           ~ 43 0
19 Fermi bn160624477 gB 22 00 46.21 +29 38 37.8           ~ 49 0
20 GRB 061201 gB 22 08 32.060 -74 34 47.90           ~ 187 0
21 GRB 090510 gB 22 14 12.60 -26 35 51.1           ~ 494 1
22 Fermi bn090927422 gB 22 55 53.41 -70 58 49.3           ~ 95 0
23 GRB 050709 gB 23 01 26.960 -38 58 39.50           ~ 298 1

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