Nebular nitrogen line emission in stripped-envelope supernovae – a new progenitor mass diagnostic

Author:

Barmentloo Stan1ORCID,Jerkstrand Anders1,Iwamoto Koichi2,Hachisu Izumi3,Nomoto Ken’ichi4,Sollerman Jesper1ORCID,Woosley Stan5

Affiliation:

1. The Oskar Klein Centre, Department of Astronomy, Stockholm University , AlbaNova, SE-10691 Stockholm , Sweden

2. Department of Physics, College of Science and Technology, Nihon University , Tokyo 101-8308 , Japan

3. Department of Earth Science and Astronomy, The University of Tokyo , Meguro-ku, Tokyo 181-0015 , Japan

4. Kavli Institute for the Physics and Mathematics of the Universe (WPI), The University of Tokyo , Kashiwa, Chiba 277-8583 , Japan

5. Department of Astronomy and Astrophysics, University of California at Santa Cruz , Santa Cruz, CA 95060 , USA

Abstract

ABSTRACT Nitrogen is produced by CNO-cycling in massive stars, and can be ejected in significant amounts in supernova explosions. While in H-rich SNe, its [N ii] 6548, 6583 emission becomes obscured by strong H$\alpha$, in explosions of He stars, this nitrogen emission becomes more visible. We here explore the formation of this line, using the sumo code to compute spectra for a grid of 1D models with parametrized mixing informed from new 2D simulations. Because the mass fraction of nitrogen in the ejecta decreases with larger He-core masses, as more of the He/N zone gets processed by shell helium burning and is lost to winds, the [N ii] luminosity relative to the overall optical flux probes the He-core mass. By comparing to large samples of data, we find that low-mass He cores ($M_{\rm preSN}\lesssim \ 3\ \mathrm{ M}_\odot$) are exclusively associated with Type IIb SNe, with the exception of Type Ib SN 2007Y. Seeing no strong nitrogen emission in other Type Ib SNe, the implication is either an origin from low-mass stars with the He/N layer (but not the He/C) layer peeled away, or from higher mass He cores. We also see no clear nitrogen emission in Type Ic SNe. We discuss the diagnostic potential of this new line metric, and also dependencies on mass-loss rate and metallicity.

Funder

Swedish Research Council

Worcester Polytechnic Institute

Ministry of Education, Culture, Sports, Science and Technology

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

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