SN 2023emq: A Flash-ionized Ibn Supernova with Possible C iii Emission

Author:

Pursiainen M.ORCID,Leloudas G.ORCID,Schulze S.ORCID,Charalampopoulos P.ORCID,Angus C. R.ORCID,Anderson J. P.ORCID,Bauer F.ORCID,Chen T.-W.ORCID,Galbany L.ORCID,Gromadzki M.ORCID,Gutiérrez C. P.ORCID,Inserra C.ORCID,Lyman J.ORCID,Müller-Bravo T. E.ORCID,Nicholl M.ORCID,Smartt S. J.ORCID,Tartaglia L.ORCID,Wiseman P.ORCID,Young D. R.ORCID

Abstract

Abstract SN 2023emq is a fast-evolving transient initially classified as a rare Type Icn supernova (SN), interacting with a H- and He-free circumstellar medium (CSM) around maximum light. Subsequent spectroscopy revealed the unambiguous emergence of narrow He lines, confidently placing SN 2023emq in the more common Type Ibn class. Photometrically, SN 2023emq has several uncommon properties regardless of its class, including its extreme initial decay (faster than >90% of Type Ibn/Icn SNe) and sharp transition in the decline rate from 0.20 to 0.07 mag day−1 at +20 days. The bolometric light curve can be modeled as CSM interaction with 0.32M of ejecta and 0.12M of CSM, with 0.006M of nickel, as expected of fast, interacting SNe. Furthermore, broadband polarimetry at +8.7 days (P = 0.55% ± 0.30%) is consistent with spherical symmetry. A discovery of a transitional Type Icn/Ibn SN would be unprecedented and would give valuable insights into the nature of mass loss suffered by the progenitor just before death, but we favor an interpretation that SN 2023emq is a Type Ibn SN that exhibited flash-ionized features in the earliest spectrum, as the features are not an exact match with other Type Icn SNe to date. However, the feature at 5700 Å, in the region of C iii and N ii emission, is significantly stronger in SN 2023emq than in the few other flash-ionized Type Ibn SNe, and if it is related to C iii, it possibly implies a continuum of properties between the two classes.

Funder

Villum Fonden

Academy of Finland

Agencia Nacional de Investigación y Desarrollo

ANID ∣ Fondo Nacional de Desarrollo Científico y Tecnológico

Ministerio de Ciencia e Innovación

EC ∣ EU Social ∣ European Social Fund Plus

MEC ∣ Consejo Superior de Investigaciones Científicas

EC ∣ Horizon 2020 Framework Programme

UK Space Agency

UKRI ∣ Science and Technology Facilities Council

UK Research and Innovation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Reference74 articles.

1. The Astropy Project: Building an Open-science Project and Status of the v2.0 Core Package

2. Astropy: A community Python package for astronomy

3. Becker A. 2015 HOTPANTS: High Order Transform of PSF ANd Template Subtraction, Astrophysics Source Code Library ascl: 1504.004 2015ascl.soft04004B

4. The Zwicky Transient Facility: Surveys and Scheduler

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