Time-varying Na iD absorption in ILRTs as a probe of circumstellar material

Author:

Byrne R A1ORCID,Fraser M1ORCID,Cai Y-Z234,Reguitti A567ORCID,Valerin G78ORCID

Affiliation:

1. School of Physics, University College Dublin , Belfield, Dublin 4, D04 V1W8, Ireland

2. Yunnan Observatories, Chinese Academy of Sciences , Kunming 650216, P.R. China

3. Key Laboratory for the Structure and Evolution of Celestial Objects, Chinese Academy of Sciences , Kunming 650216, P.R. China

4. International Centre of Supernovae, Yunnan Key Laboratory , Kunming 650216, P.R. China

5. Instituto de Astrofìsica, Departamento de Ciencias Fisicas, Universidad Andres Bello , Fernandez Concha 700, Las Condes, Santiago 8320000, Chile

6. Millennium Institute of Astrophysics (MAS) , Nuncio Monsenor Sòtero Sanz 100, Providencia, Santiago 8320000, Chile

7. INAF – Osservatorio Astronomico di Padova , Vicolo dell’Osservatorio 5, I-35122 Padova, Italy

8. Dipartimento di Fisica e Astronomia ‘G. Galilei’ , Università degli studi di Padova Vicolo dell’Osservatorio 3, I-35122 Padova, Italy

Abstract

ABSTRACTIntermediate-luminosity red transients (ILRTs) are a class of observed transient posited to arise from the production of an electron-capture supernova from a super-asymptotic giant branch star within a dusty cocoon. In this paper, we present a systematic analysis of narrow Na i D absorption as a means of probing the circumstellar environment of these events. We find a wide diversity of evolution in ILRTs in terms of line strength, time-scale, and shape. We present a simple toy model designed to predict this evolution as arising from ejecta from a central supernova passing through a circumstellar environment wherein Na ii is recombining to Na i over time. We find that while our toy model can qualitatively explain the evolution of a number of ILRTs, the majority of our sample undergoes evolution more complex than predicted. The success of using the Na i D doublet as a diagnostic tool for studying circumstellar material will rely on the availability of regular high-resolution spectral observations of multiple ILRTs, and more detailed spectral modelling will be required to produce models capable of explaining the diverse range of behaviours exhibited by ILRTs. In addition, the strength of the Na i D absorption feature has been used as a means of estimating the extinction of sources, and we suggest that the variability visible in ILRTs would prevent such methods from being used for this class of transient, and any others showing evidence of variability.

Funder

Irish Research Council

Royal Society

ANID

INAF

University of Padova

International Centre of Supernovae, Yunnan Key Laboratory

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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