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Spectra of Hydrogen-poor Superluminous Supernovae from the Palomar Transient Factory

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posted on 2024-08-06, 11:25 authored by Robert M. Quimby, Annalisa De Cia, Avishay Gal-Yam, Giorgos Leloudas, Ragnhild Lunnan, Daniel A. Perley, Paul M. Vreeswijk, Lin Yan, Joshua S. Bloom, S. Bradley Cenko, Jeff CookeJeff Cooke, Richard Ellis, Alexei V. Filippenko, Mansi M. Kasliwal, Io K. W. Kleiser, Shrinivas R. Kulkarni, Thomas Matheson, Peter E. Nugent, Yen-Chen Pan, Jeffrey M. Silverman, Assaf Sternberg, Mark Sullivan, Ofer Yaron
Most Type I superluminous supernovae (SLSNe-I) reported to date have been identified by their high peak luminosities and spectra lacking obvious signs of hydrogen. We demonstrate that these events can be distinguished from normal-luminosity SNe (including Type Ic events) solely from their spectra over a wide range of light-curve phases. We use this distinction to select 19 SLSNe-I and four possible SLSNe-I from the Palomar Transient Factory archive (including seven previously published objects). We present 127 new spectra of these objects and combine these with 39 previously published spectra, and we use these to discuss the average spectral properties of SLSNe-I at different spectral phases. We find that Mn II most probably contributes to the ultraviolet spectral features after maximum light, and we give a detailed study of the O II features that often characterize the early-time optical spectra of SLSNe-I. We discuss the velocity distribution of O II, finding that for some SLSNe-I this can be confined to a narrow range compared to relatively large systematic velocity shifts. Mg II and Fe II favor higher velocities than O II and C II, and we briefly discuss how this may constrain power-source models. We tentatively group objects by how well they match either SN 2011ke or PTF12dam and discuss the possibility that physically distinct events may have been previously grouped together under the SLSN-I label.

Funding

Detecting the deaths of the first stars: Investigating the physical processes in the early Universe

Australian Research Council

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ISSN

1538-4357

Journal title

Astrophysical Journal

Volume

855

Issue

1

Article number

article no. 2

Pagination

1 p

Publisher

American Astronomical Society

Copyright statement

Copyright © 2018 The American Astronomical Society. All rights reserved.

Language

eng

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