The first detection of ultra-diffuse galaxies in the Hydra I cluster from the VEGAS survey

Astronomy & Astrophysics EDP Sciences 642 (2020) a48

Authors:

E Iodice, M Cantiello, M Hilker, M Rejkuba, M Arnaboldi, M Spavone, L Greggio, DA Forbes, G D’Ago, S Mieske, C Spiniello, A La Marca, R Rampazzo, M Paolillo, M Capaccioli, P Schipani

Measuring the distance to the black hole candidate X-ray binary MAXI J1348-630 using HI absorption

(2020)

Authors:

J Chauhan, JCA Miller-Jones, W Raja, JR Allison, PFL Jacob, GE Anderson, F Carotenuto, S Corbel, R Fender, A Hotan, M Whiting, PA Woudt, B Koribalski, E Mahony

SDSS-IV MaNGA: the indispensable role of bars in enhancing the central star formation of low-z galaxies

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) (2020)

Authors:

Lin Lin, Cheng Li, Cheng Du, Enci Wang, Ting Xiao, Martin Bureau, Amelia Fraser-McKelvie, Karen Masters, Lihwai Lin, David Wake, Lei Hao

Abstract:

<jats:title>Abstract</jats:title> <jats:p>We analyse two-dimensional maps and radial profiles of EW(Hα), EW(HδA), and Dn(4000) of low-redshift galaxies using integral field spectroscopy from the MaNGA survey. Out of ≈1400 nearly face-on late-type galaxies with a redshift z &amp;lt; 0.05, we identify 121 “turnover” galaxies that each have a central upturn in EW(Hα), EW(HδA) and/or a central drop in Dn(4000), indicative of ongoing/recent star formation. The turnover features are found mostly in galaxies with a stellar mass above ∼1010 M⊙ and NUV-r colour less than ≈5. The majority of the turnover galaxies are barred, with a bar fraction of 89±3%. Furthermore, for barred galaxies the radius of the central turnover region is found to tightly correlate with one third of the bar length. Comparing the observed and the inward extrapolated star formation rate surface density, we estimate that the central SFR have been enhanced by an order of magnitude. Conversely, only half of the barred galaxies in our sample have a central turnover feature, implying that the presence of a bar is not sufficient to lead to a central SF enhancement. We further examined the SF enhancement in paired galaxies, as well as the local environment, finding no relation. This implies that environment is not a driving factor for central SF enhancement in our sample. Our results reinforce both previous findings and theoretical expectation that galactic bars play a crucial role in the secular evolution of galaxies by driving gas inflow and enhancing the star formation and bulge growth in the center.</jats:p>

SN 2018gjx reveals that some SNe Ibn are SNe IIb exploding in dense circumstellar material

(2020)

Authors:

SJ Prentice, K Maguire, I Boian, J Groh, J Anderson, C Barbarino, KA Bostroem, J Burke, P Clark, Y Dong, M Fraser, L Galbany, M Gromadzki, CP Gutiérrez, DA Howell, D Hiramatsu, C Inserra, PA James, E Kankare, H Kuncarayakti, PA Mazzali, C McCully, TE Müller-Bravo, M Nichol, C Pellegrino, SJ Smartt, J Sollerman, L Tartaglia, S Valenti, DR Young

Optical studies of two stripped-envelope supernovae – SN 2015ap (Type Ib) and SN 2016P (Type Ic)

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 497:3 (2020) 3770-3789

Authors:

Anjasha Gangopadhyay, Kuntal Misra, DK Sahu, Shan-Qin Wang, Brajesh Kumar, Long Li, GC Anupama, Raya Dastidar, N Elias-Rosa, Brijesh Kumar, Mridweeka Singh, SB Pandey, Pankaj Sanwal, Avinash Singh, S Srivastav, L Tartaglia, L Tomasella

Abstract:

ABSTRACT We present the photometric and spectroscopic studies of a Type Ib SN 2015ap and a Type Ic SN 2016P. SN 2015ap is one of the bright (MV = −18.04 mag) Type Ib while SN 2016P lies at an average value among the Type Ic SNe (MV = −17.53 mag). Bolometric light-curve modelling of SNe 2015ap and 2016P indicates that both the SNe are powered by 56Ni + magnetar model with 56Ni masses of 0.01 and 0.002 M⊙, ejecta masses of 3.75 and 4.66 M⊙, spin period P0 of 25.8 and 36.5 ms, and magnetic field Bp of 28.39 × 1014 and 35.3 × 1014 G, respectively. The early spectra of SN 2015ap show prominent lines of He with a ‘W’ feature due to Fe complexes while other lines of Mg ii, Na i, and Si ii are present in both SNe 2015ap and 2016P. Nebular phase [O i] profile indicates an asymmetric profile in SN 2015ap. The [O i]/[Ca ii] ratio and nebular spectral modelling of SN 2015ap hint towards a progenitor mass between 12 and 20 M⊙.