GRB 091127/SN 2009nz and the VLT/X-shooter spectroscopy of its host galaxy: probing the faint end of the mass-metallicity relation

We perform a detailed study of the gamma-ray burst GRB 091127/SN 2009nz host galaxy at z = 0.490 using the VLT/X-shooter spectrograph in slit and integral-field unit (IFU) mode. From the analysis of the optical and X-ray afterglow data obtained from ground-based telescopes and Swift-XRT, we confirm...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2011-11, Vol.535, p.A127
Hauptverfasser: Vergani, S. D., Flores, H., Covino, S., Fugazza, D., Gorosabel, J., Levan, A. J., Puech, M., Salvaterra, R., Tello, J. C., de Ugarte Postigo, A., D’Avanzo, P., D’Elia, V., Fernández, M., Fynbo, J. P. U., Ghirlanda, G., Jelínek, M., Lundgren, A., Malesani, D., Palazzi, E., Piranomonte, S., Rodrigues, M., Sánchez-Ramírez, R., Terrón, V., Thöne, C. C., Antonelli, L. A., Campana, S., Castro-Tirado, A. J., Goldoni, P., Hammer, F., Hjorth, J., Jakobsson, P., Kaper, L., Melandri, A., Milvang-Jensen, B., Sollerman, J., Tagliaferri, G., Tanvir, N. R., Wiersema, K., Wijers, R. A. M. J.
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Sprache:eng
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Zusammenfassung:We perform a detailed study of the gamma-ray burst GRB 091127/SN 2009nz host galaxy at z = 0.490 using the VLT/X-shooter spectrograph in slit and integral-field unit (IFU) mode. From the analysis of the optical and X-ray afterglow data obtained from ground-based telescopes and Swift-XRT, we confirm the presence of a bump associated with SN 2009nz and find evidence of a possible jet break in the afterglow lightcurve. The X-shooter afterglow spectra reveal several emission lines from the underlying host, from which we derive its integrated properties. These properties agree with those of previously studied GRB-SN hosts and, more generally, with those of the long GRB host population. We use the Hubble Space Telescope and ground-based images of the host to determine its stellar mass (M⋆). Our results extend to lower M⋆ values the M-Z plot derived for the sample of long GRB hosts at 0.3 
ISSN:0004-6361
1432-0746
1432-0746
DOI:10.1051/0004-6361/201117726