The Type II SN 2025pht in NGC 1637: A Red Supergiant with Carbon-rich Circumstellar Dust as the First JWST Detection of a Supernova Progenitor Star

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Auteurs principaux: Kilpatrick, Charles D., Suresh, Aswin, Davis, Kyle W., Drout, Maria R., Foley, Ryan J., Gagliano, Alexander, Jacobson-Galan, Wynn V., Kaur, Ravjit, Taggart, Kirsty, Vazquez, Jason
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Publié: 2025
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author Kilpatrick, Charles D.
Suresh, Aswin
Davis, Kyle W.
Drout, Maria R.
Foley, Ryan J.
Gagliano, Alexander
Jacobson-Galan, Wynn V.
Kaur, Ravjit
Taggart, Kirsty
Vazquez, Jason
author_facet Kilpatrick, Charles D.
Suresh, Aswin
Davis, Kyle W.
Drout, Maria R.
Foley, Ryan J.
Gagliano, Alexander
Jacobson-Galan, Wynn V.
Kaur, Ravjit
Taggart, Kirsty
Vazquez, Jason
contents We present follow-up imaging and spectroscopy and pre-explosion imaging of supernova (SN) 2025pht located in NGC 1637 at 12 Mpc. Our spectroscopy shows that SN 2025pht is a Type II SN with broad lines of hydrogen and with minimal line-of-sight extinction inferred from Na I D absorption. NGC 1637 was the target of several epochs of Hubble Space Telescope (HST) and James Webb Space Telescope (JWST) imaging covering the site of SN 2025pht from 31 to 0.7 yr prior to discovery. Using a follow-up HST image of SN 2025pht aligned to these data, we demonstrate that there is a credible progenitor candidate detected in multiple epochs of HST imaging and in JWST imaging from 1.3-8.7 microns, the first JWST counterpart to a SN and the longest wavelength detection of a SN progenitor star. Fitting this source to red supergiant (RSG) spectral-energy distributions (SEDs), we show that it is consistent with a log(L/Lsun) = 5.0 RSG heavily reddened by circumstellar dust. The JWST photometry enable strong constraints on the nature of the circumstellar medium, and we find that the SED favors graphite-rich dust and an optical circumstellar extinction of Av = 5.3 mag as opposed to silicate-rich dust. We discuss the implications of a pre-SN RSG enshrouded in carbon-rich dust and this finding for the overall population of progenitor stars to Type II SN as well as the future of SN progenitor star discovery with JWST.
format Preprint
id arxiv_https___arxiv_org_abs_2508_10994
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Type II SN 2025pht in NGC 1637: A Red Supergiant with Carbon-rich Circumstellar Dust as the First JWST Detection of a Supernova Progenitor Star
Kilpatrick, Charles D.
Suresh, Aswin
Davis, Kyle W.
Drout, Maria R.
Foley, Ryan J.
Gagliano, Alexander
Jacobson-Galan, Wynn V.
Kaur, Ravjit
Taggart, Kirsty
Vazquez, Jason
High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
We present follow-up imaging and spectroscopy and pre-explosion imaging of supernova (SN) 2025pht located in NGC 1637 at 12 Mpc. Our spectroscopy shows that SN 2025pht is a Type II SN with broad lines of hydrogen and with minimal line-of-sight extinction inferred from Na I D absorption. NGC 1637 was the target of several epochs of Hubble Space Telescope (HST) and James Webb Space Telescope (JWST) imaging covering the site of SN 2025pht from 31 to 0.7 yr prior to discovery. Using a follow-up HST image of SN 2025pht aligned to these data, we demonstrate that there is a credible progenitor candidate detected in multiple epochs of HST imaging and in JWST imaging from 1.3-8.7 microns, the first JWST counterpart to a SN and the longest wavelength detection of a SN progenitor star. Fitting this source to red supergiant (RSG) spectral-energy distributions (SEDs), we show that it is consistent with a log(L/Lsun) = 5.0 RSG heavily reddened by circumstellar dust. The JWST photometry enable strong constraints on the nature of the circumstellar medium, and we find that the SED favors graphite-rich dust and an optical circumstellar extinction of Av = 5.3 mag as opposed to silicate-rich dust. We discuss the implications of a pre-SN RSG enshrouded in carbon-rich dust and this finding for the overall population of progenitor stars to Type II SN as well as the future of SN progenitor star discovery with JWST.
title The Type II SN 2025pht in NGC 1637: A Red Supergiant with Carbon-rich Circumstellar Dust as the First JWST Detection of a Supernova Progenitor Star
topic High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2508.10994