SN 2010ay is a Luminous and Broad-lined Type Ic Supernova within a Low-metallicity Host Galaxy

(2011)

Authors:

Nathan E Sanders, AM Soderberg, S Valenti, RJ Foley, R Chornock, L Chomiuk, E Berger, S Smartt, K Hurley, SD Barthelmy, EM Levesque, G Narayan, RP Kirshner, MT Botticella, MS Briggs, V Connaughton, Y Terada, N Gehrels, S Golenetskii, E Mazets, T Cline, A von Kienlin, W Boynton, KC Chambers, T Grav, JN Heasley, KW Hodapp, R Jedicke, N Kaiser, R-P Kudritzki, GA Luppino, RH Lupton, EA Magnier, DG Monet, JS Morgan, PM Onaka, PA Price, CW Stubbs, JL Tonry, RJ Wainscoat, MF Waterson

Is there really a dichotomy in active galactic nucleus jet power?

Monthly Notices of the Royal Astronomical Society 417:1 (2011) 184-197

Authors:

JW Broderick, RP Fender

Abstract:

To gain new insights into the radio-loud/radio-quiet dichotomy reported for active galactic nuclei (AGN), we examine radio loudness as a function of Eddington ratio for a previously published sample of 199 AGN from five different populations. After initially considering radio loudnesses derived using total radio luminosities, we repeat the investigation using core radio luminosities only, applying a previously established mass correction for these core luminosities. In both cases, for Eddington ratios <1 per cent, Fanaroff-Riley type I and broad-line radio galaxies are on average more radio-loud than Seyfert and low-ionization nuclear emission-line region galaxies. However, the distribution of radio loudnesses for the mass-corrected, core-only sample is much narrower than that of the clearly bimodal total radio loudness distribution. The advantages and disadvantages of using core- or lobe-dominated radio luminosity as a measure of instantaneous jet power are discussed. We furthermore compare the core and total radio luminosities for the entire sample, as well as illustrating the importance of the mass term by comparing the AGN with a sample of black hole X-ray binaries. We conclude that if the mass-corrected core radio luminosity is a good measure of jet power, then black hole spin may have considerably less impact on jet power than previously reported, or that our sample does not include the extremes of spin. If the spread in jet power is small, then we suggest that characteristics of the ambient environment and/or the radio source age could be equally as important in producing a radio-loudyradio-quiet dichotomy seen in total radio luminosity. © 2011 The Authors Monthly Notices of the Royal Astronomical Society © 2011 RAS.

SN 2009jf: a slow-evolving stripped-envelope core-collapse supernova*

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 416:4 (2011) 3138-3159

Authors:

S Valenti, M Fraser, S Benetti, G Pignata, J Sollerman, C Inserra, E Cappellaro, A Pastorello, SJ Smartt, M Ergon, MT Botticella, J Brimacombe, F Bufano, M Crockett, I Eder, D Fugazza, JB Haislip, M Hamuy, A Harutyunyan, KM Ivarsen, E Kankare, R Kotak, AP LaCluyze, L Magill, S Mattila, J Maza, PA Mazzali, DE Reichart, S Taubenberger, M Turatto, L Zampieri

SN 2009md: Another faint supernova from a low-mass progenitor

Monthly Notices of the Royal Astronomical Society 417:2 (2011) 1417-1433

Authors:

M Fraser, M Ergon, JJ Eldridge, S Valenti, A Pastorello, J Sollerman, SJ Smartt, I Agnoletto, I Arcavi, S Benetti, MT Botticella, F Bufano, A Campillay, RM Crockett, A Gal-Yam, E Kankare, G Leloudas, K Maguire, S Mattila, JR Maund, F Salgado, A Stephens, S Taubenberger, M Turatto

Abstract:

We present adaptive optics imaging of the core-collapse supernova (SN) 2009md, which we use together with archival Hubble Space Telescope data to identify a coincident progenitor candidate. We find the progenitor to have an absolute magnitude of V=-4.63+0.3-0.4mag and a colour of V-I= 2.29+0.25-0.39mag, corresponding to a progenitor luminosity of log L/L⊙~ 4.54 ± 0.19 dex. Using the stellar evolution code STARS, we find this to be consistent with a red supergiant progenitor with M= 8.5+6.5-1.5 M⊙. The photometric and spectroscopic evolution of SN 2009md is similar to that of the class of sub-luminous Type IIP SNe; in this paper we compare the evolution of SN 2009md primarily to that of the sub-luminous SN 2005cs. We estimate the mass of 56Ni ejected in the explosion to be (5.4 ± 1.3) × 10-3 M⊙ from the luminosity on the radioactive tail, which is in agreement with the low 56Ni masses estimated for other sub-luminous Type IIP SNe. From the light curve and spectra, we show the SN explosion had a lower energy and ejecta mass than the normal Type IIP SN 1999em. We discuss problems with stellar evolutionary models, and the discrepancy between low observed progenitor luminosities (log L/L⊙~4.3-5 dex) and model luminosities after the second dredge-up for stars in this mass range, and consider an enhanced carbon burning rate as a possible solution. In conclusion, SN 2009md is a faint SN arising from the collapse of a progenitor close to the lower mass limit for core collapse. This is now the third discovery of a low-mass progenitor star producing a low-energy explosion and low 56Ni ejected mass, which indicates that such events arise from the lowest end of the mass range that produces a core-collapse SN (7-8 M⊙). © 2011 The Authors. Monthly Notices of the Royal Astronomical Society © 2011 RAS.

SWIFT observations of the Arp 147 ring galaxy system

Monthly Notices of the Royal Astronomical Society 417:2 (2011) 835-844

Authors:

L Fogarty, N Thatte, M Tecza, F Clarke, T Goodsall, R Houghton, G Salter, RL Davies, SA Kassin

Abstract:

We present observations of Arp 147, a galaxy system comprising a collisionally created ring galaxy and an early-type galaxy, using the Oxford SWIFT integral field spectrograph (IFS) at the 200-inch Hale telescope. We derive spatially resolved kinematics from the IFS data and use these to study the interaction between the two galaxies. We find the edge-to-edge expansion velocity of the ring is 225 ± 8kms-1, implying an upper limit on the time-scale for the collision of 50Myr. We also calculate that the angle of impact for the collision is between, where 0° would imply a perpendicular collision. The ring galaxy is strongly star forming with the star formation likely to have been triggered by the collision between the two galaxies. We also measure some key physical parameters in an integrated and spatially resolved manner for the ring galaxy. Using the observed B-I colours and the Hα equivalent widths, we conclude that two stellar components (a young and an old population) are required everywhere in the ring to simultaneously match both observed quantities. We are able to constrain the age range, light and mass fractions of the young star formation activity in the ring, finding a modest age range, a light fraction of less than a third, and a negligible (<1 per cent) mass fraction. We postulate that the redder colours observed in the south-east corner of the ring galaxy could correspond to the nuclear bulge of the original disc galaxy from which the ring was created, consistent with the stellar mass in the south-east quadrant being 30-50 per cent of the total. The ring appears to have been a typical disc galaxy prior to the encounter. The ring shows electron densities consistent with typical values for star-forming Hii regions. The eastern half of the ring exhibits a metallicity a factor of ~2 higher than the western half. The ionization parameter, measured across the ring, roughly follows the previously observed trend with metallicity. © 2011 The Authors Monthly Notices of the Royal Astronomical Society © 2011 RAS.