The detailed optical light curve of GRB 030329

Astrophysical Journal 606:1 I (2004) 381-394

Authors:

YM Lipkin, EO Ofek, A Gal-Yam, EM Leibowitz, D Poznanski, S Kaspi, D Polishook, SR Kulkarni, DW Fox, E Berger, N Mirabal, J Halpern, M Bureau, K Fathi, PA Price, BA Peterson, A Frebel, B Schmidt, JA Orosz, JB Fitzgerald, JS Bloom, PG Van Dokkum, CD Bailyn, MM Buxton, M Barsony

Abstract:

We present densely sampled BVRI light curves of the optical transient associated with the gamma-ray burst (GRB) 030329, the result of a coordinated observing campaign conducted at five observatories. Augmented with published observations of this GRB, the compiled optical data set contains 2687 photometric measurements, obtained between 78 minutes and 79 days after the burst. This data set allows us to follow the photometric evolution of the transient with unprecedented detail. We use the data to constrain the light curve of the underlying supernova (SN) 2003dh and show that it evolved faster than and was probably somewhat fainter than the Type Ic SN 1998bw, associated with GRB 980425. We find that our data can be described by a broken power-law decay perturbed by a complex variable component. The early- and late-time decay slopes are determined to be α1 ≈ 1.1 and α2 ≈ 2. Assuming this single-break power-law model, we constrain the break to lie between ∼3 and ∼8 days after the burst. This simple, singly broken power-law model, derived only from the analysis of our optical observations, may also account for available multiband data, provided that the break happened ∼8 days after the burst. The more complex double-jet model of Berger et al. provides a comparable fit to the optical, X-ray, millimeter, and radio observations of this event. The unique early coverage available for this event allows us to trace the color evolution of the afterglow during the first hours after the burst. We detect a significant change in optical colors during the first day. Our color analysis is consistent with a cooling-break frequency sweeping through the optical band during the first day. The light curves of GRB 030329 reveal a rich array of variations, superposed over the mean power-law decay. We find that the early variations (≲8 days after the burst) are asymmetric, with a steep rise followed by a relatively slower (by a factor of about 2) decline. The variations maintain a similar timescale during the first 4 days and then get significantly longer. The structure of these variations is similar to those previously detected in the afterglows of several GRBs.

A chemical analysis of five hot stars towards the Galactic centre

Astronomy & Astrophysics EDP Sciences 419:2 (2004) 713-723

Authors:

KE Munn, PL Dufton, SJ Smartt, NC Hambly

The SAURON project - III. Integral-field absorption-line kinematics of 48 elliptical and lenticular galaxies

(2004)

Authors:

E Emsellem, M Cappellari, RF Peletier, RM McDermid, R Bacon, M Bureau, Y Copin, RL Davies, D Krajnovic, H Kuntschner, BW Miller, PT de Zeeuw

The environments of hyperluminous infrared galaxies at 0.44 < z < 1.55

Monthly Notices of the Royal Astronomical Society 349:2 (2004) 518-526

Authors:

D Farrah, J Geach, M Fox, S Serjeant, S Oliver, A Verma, A Kaviani, M Rowan-Robinson

Abstract:

We present deep wide-field Ks-band observations of six Hyperluminous Infrared Galaxies (HLIRGs) spanning a redshift range 0.44 < z < 1.55. The sample resides in a wide variety of environments, from the field to Abell 2 clusters, with a mean galaxy-HLIRG clustering amplitude of 〈Bgh〉 = 190 ± 45 Mpc1.77. The range in environments, and the mean clustering level, are both greater than those seen in local IR-luminous galaxies, from which we infer that the range of galaxy evolution processes driving IR-luminous galaxy evolution at z > 0.5 is greater than locally, and includes mergers between gas-rich spiral galaxies in the field, but also includes encounters in clusters and hierarchical build-up. The similarity in the range of environments and mean clustering amplitude between our sample and QSOs over a similar redshift range is consistent with the interpretation where evolutionary connections between IR-luminous galaxies and QSOs are stronger at z > 0.5 than locally, and that, at these redshifts, the processes that drive QSO evolution are similar to those that drive IR-luminous galaxy evolution. From comparison of the HLIRG and QSO host galaxies we further postulate that a larger fraction of IR-luminous galaxies pass through an optical QSO stage at z > 0.5 than locally.

Simultaneous radio and X-ray observations of the low-mass X-ray binary GX 13+1

Astronomy & Astrophysics EDP Sciences 418:1 (2004) 255-263

Authors:

J Homan, R Wijnands, MP Rupen, R Fender, RM Hjellming, T di Salvo, M van der Klis