A black-hole mass measurement from molecular gas kinematics in NGC4526

Nature 494:7437 (2013) 328-330

Authors:

TA Davis, M Bureau, M Cappellari, M Sarzi, L Blitz

Abstract:

The masses of the supermassive black holes found in galaxy bulges are correlated with a multitude of galaxy properties, leading to suggestions that galaxies and black holes may evolve together. The number of reliably measured black-hole masses is small, and the number of methods for measuring them is limited, holding back attempts to understand this co-evolution. Directly measuring black-hole masses is currently possible with stellar kinematics (in early-type galaxies), ionized-gas kinematics (in some spiral and early-type galaxies) and in rare objects that have central maser emission. Here we report that by modelling the effect of a black hole on the kinematics of molecular gas it is possible to fit interferometric observations of CO emission and thereby accurately estimate black-hole masses. We study the dynamics of the gas in the early-type galaxy NGC 4526, and obtain a best fit that requires the presence of a central dark object of× 10 8 solar masses (3σ confidence limit). With the next-generation millimetre-wavelength interferometers these observations could be reproduced in galaxies out to 75 megaparsecs in less than 5 hours of observing time. The use of molecular gas as a kinematic tracer should thus allow one to estimate black-hole masses in hundreds of galaxies in the local Universe, many more than are accessible with current techniques. © 2013 Macmillan Publishers Limited. All rights reserved.

A complex state transition from the black hole candidate swift J1753.5-0127

Monthly Notices of the Royal Astronomical Society 429:2 (2013) 1244-1257

Authors:

P Soleri, T Mũnoz-Darias, S Motta, T Belloni, P Casella, M Ḿendez, D Altamirano, M Linares, R Wijnands, R Fender, M Van der Klis

Abstract:

We present our monitoring campaign of the outburst of the black hole candidate Swift J1753.5-0127, observed with the Rossi X-ray Timing Explorer and the Swift satellites. After ̃4.5 yr since its discovery, the source had a transition to the hard intermediate state. We performed spectral and timing studies of the transition showing that, unlike the majority of the transient black holes, the system did not go to the soft states but it returned to the hard state after a few months. During this transition Swift J1753.5-0127 features properties which are similar to those displayed by the black hole Cygnus X-1. We compared Swift J1753.5-0127 to one dynamically confirmed black hole and two neutron stars showing that its power spectra are in agreement with the binary hosting a black hole. We also suggest that the prolonged period at low flux that followed the initial flare is reminiscent of that observed in other X-ray binaries, as well as in cataclysmic variables. © 2012 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society.

Fast and slow rotators in the densest environments: A FLAMES/GIRAFFE integral field spectroscopy study of galaxies in a1689 at z = 0.183

Monthly Notices of the Royal Astronomical Society 429:2 (2013) 1258-1266

Authors:

F D'Eugenio, RCW Houghton, RL Davies, E Dalla Bontà

Abstract:

We present FLAMES/GIRAFFE integral field spectroscopy of 30 galaxies in the massive cluster A1689 at z = 0.183. Conducting an analysis similar to that of ATLAS3D, we extend the baseline of the kinematic morphology-density relation by an order of magnitude in projected density and show that it is possible to use existing instruments to identify slow and fast rotators beyond the local Universe. We find 4.5 ± 1.0 slow rotators with a distribution in magnitude similar to those in the Virgo cluster. The overall slow rotator fraction of our A1689 sample is 0.15 ± 0.03, the same as in Virgo using our selection criteria. This suggests that the fraction of slow rotators in a cluster is not strongly dependent on its density. However, within A1689, we find that the fraction of slow rotators increases towards the centre, as was also found in the Virgo cluster. © 2012 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society.

PESSTO monitoring of SN 2012hn: further heterogeneity among faint type I supernovae

(2013)

Authors:

S Valenti, F Yuan, S Taubenberger, K Maguire, A Pastorello, S Benetti, SJ Smartt, E Cappellaro, DA Howell, L Bildsten, K Moore, M Stritzinger, JP Anderson, S Benitez-Herrera, F Bufano, S Gonzalez-Gaitan, MG McCrum, G Pignata, M Fraser, A Gal-Yam, L Le Guillou, C Inserra, DE Reichart, R Scalzo, M Sullivan, O Yaron, DR Young

Spectroscopic Observations of SN 2012fr: A Luminous Normal Type Ia Supernova with Early High Velocity Features and Late Velocity Plateau

(2013)

Authors:

MJ Childress, RA Scalzo, SA Sim, BE Tucker, F Yuan, BP Schmidt, SB Cenko, JM Silverman, C Contreras, EY Hsiao, M Phillips, N Morrell, SW Jha, C McCully, AV Filippenko, JP Anderson, S Benetti, F Bufano, T de Jaeger, F Forster, A Gal-Yam, L Le Guillou, K Maguire, J Maund, PA Mazzali, G Pignata, S Smartt, J Spyromilio, M Sullivan, F Taddia, S Valenti, DDR Bayliss, M Bessell, GA Blanc, DJ Carson, KI Clubb, C de Burgh-Day, TD Desjardins, JJ Fang, OD Fox, EL Gates, I-T Ho, S Keller, PL Kelly, C Lidman, NS Loaring, JR Mould, M Owers, S Ozbilgen, L Pei, T Pickering, MB Pracy, JA Rich, BE Schaefer, N Scott, M Stritzinger, FPA Vogt, G Zhou