2016MNRAS.462.3528C


Query : 2016MNRAS.462.3528C

2016MNRAS.462.3528C - Mon. Not. R. Astron. Soc., 462, 3528-3536 (2016/November-2)

Liverpool Telescope follow-up of candidate electromagnetic counterparts during the first run of Advanced LIGO.

COPPERWHEAT C.M., STEELE I.A., PIASCIK A.S., BERSIER D., BODE M.F., COLLINS C.A., DARNLEY M.J., GALLOWAY D.K., GOMBOC A., KOBAYASHI S., LAMB G.P., LEVAN A.J., MAZZALI P.A., MUNDELL C.G., PIAN E., POLLACCO D., STEEGHS D., TANVIR N.R., ULACZYK K. and WIERSEMA K.

Abstract (from CDS):

The first direct detection of gravitational waves was made in 2015 September with the Advanced LIGO detectors. By prior arrangement, a worldwide collaboration of electromagnetic follow-up observers were notified of candidate gravitational wave events during the first science run, and many facilities were engaged in the search for counterparts. Three alerts were issued to the electromagnetic collaboration over the course of the first science run, which lasted from 2015 September to 2016 January. Two of these alerts were associated with the gravitational wave events since named GW150914 and GW151226. In this paper we provide an overview of the Liverpool Telescope contribution to the follow-up campaign over this period. Given the hundreds of square degree uncertainty in the sky position of any gravitational wave event, efficient searching for candidate counterparts required survey telescopes with large (∼degrees) fields of view. The role of the Liverpool Telescope was to provide follow-up classification spectroscopy of any candidates. We followed candidates associated with all three alerts, observing 1, 9 and 17 candidates respectively. We classify the majority of the transients we observed as supernovae. No counterparts were identified, which is in line with expectations given that the events were classified as black hole-black hole mergers. However these searches laid the foundation for similar follow-up campaigns in future gravitational wave detector science runs, in which the detection of neutron star merger events with observable electromagnetic counterparts is much more likely.

Abstract Copyright: © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): gravitational waves - methods: data analysis - techniques: spectroscopic - techniques: spectroscopic

CDS comments: The LIGO trigger G194575 is not in Simbad.

Simbad objects: 29

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Number of rows : 29
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 iPTF 15dmn AGN 00 28 56.73 -11 24 19.8           ~ 2 0
2 iPTF 15dld SN* 00 58 13.0 -03 39 48           ~ 10 0
3 iPTF 15dln ev 00 58 19.67 +07 14 05.0           ~ 2 0
4 iPTF 15dnh ev 00 59 38.27 -14 11 56.8           ~ 2 0
5 iPTF 15ffh ev 01 22 13.24 -05 12 07.3           ~ 1 0
6 iPTF 15dmk SN* 01 24 54.368 +00 37 07.46           SNII 4 0
7 iPTF 15dni AG? 01 25 04.02 -04 42 30.4           ~ 2 0
8 iPTF 15ffz ev 01 29 04.00 -08 13 40.3           ~ 1 0
9 iPTF 15ffm ev 01 32 25.40 -04 01 59.3           ~ 1 0
10 iPTF 15fed ev 01 52 20.14 +01 33 26.9           ~ 1 0
11 UGC 1410 GiG 01 56 16.958 +04 38 49.67   15.5       ~ 44 0
12 iPTF 15fib ev 02 12 34.68 +17 45 47.2           ~ 1 1
13 ASASSN -15rw SN* 02 15 58.4588162232 +12 14 13.760821176           SNIa-norm 13 0
14 iPTF 15ffi ev 02 21 45.03 +07 37 02.3           ~ 1 0
15 iPTF 15ffk ev 02 22 36.22 +06 52 40.3           ~ 1 0
16 SN 2015cp SN* 03 09 12.7484496240 +27 31 16.926356064           SNIa 24 0
17 SN 2006aj SN* 03 21 39.670 +16 52 02.27 17.96 19.11 17.40     SNIc-BL 940 1
18 PSST 15dcq SN* 03 22 55.83 +34 59 23.6           SNIa 2 0
19 iPTF 15fhd ev 05 54 48.09 +57 54 41.0           ~ 1 0
20 iPTF 15fhq ev 06 23 25.94 +57 11 51.2           ~ 1 0
21 PSST 15ccx SN* 08 18 03.90 +04 18 04.1           SNIa 2 0
22 iPTF 15fhp ev 09 08 44.36 +55 27 06.4           ~ 1 0
23 iPTF 15fhl SN* 12 28 13.60 +17 37 01.4           SNIb/c 3 0
24 SN 2013dx SN* 14 29 14.77 +15 46 26.6           ~ 151 0
25 iPTF 15dkm SN* 23 37 17.69340 -03 31 57.1314           SNII 3 0
26 iPTF 15dkn ev 23 50 11.10 +00 05 47.8           ~ 2 0
27 iPTF 15dkk ev 23 50 17.21 -03 05 24.0           ~ 2 0
28 GrW 151226 GWE ~ ~           ~ 257 1
29 GrW 150914 GWE ~ ~           ~ 590 1

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