Seeing the Outer Edge of the Infant Type Ia Supernova 2024epr in the Optical and Near Infrared

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Hoogendam, W. B., Jones, D. O., Ashall, C., Shappee, B. J., Foley, R. J., Tucker, M. A., Huber, M. E., Auchettl, K., Desai, D. D., Do, A., Hinkle, J. T., Romagnoli, S., Shi, J., Syncatto, A., Angus, C. R., Chambers, K. C., Coulter, D. A., Davis, K. W., de Boer, T., Gagliano, A., Kong, M., Lin, C. -C., Lowe, T. B., Magnier, E. A., Minguez, P., Pan, Y. -C., Patra, K. C., Severson, S. A., Taggart, K., Wasserman, A. R., Yadavalli, S. K., Chen, P., Post, R. S.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908496021159936
author Hoogendam, W. B.
Jones, D. O.
Ashall, C.
Shappee, B. J.
Foley, R. J.
Tucker, M. A.
Huber, M. E.
Auchettl, K.
Desai, D. D.
Do, A.
Hinkle, J. T.
Romagnoli, S.
Shi, J.
Syncatto, A.
Angus, C. R.
Chambers, K. C.
Coulter, D. A.
Davis, K. W.
de Boer, T.
Gagliano, A.
Kong, M.
Lin, C. -C.
Lowe, T. B.
Magnier, E. A.
Minguez, P.
Pan, Y. -C.
Patra, K. C.
Severson, S. A.
Taggart, K.
Wasserman, A. R.
Yadavalli, S. K.
Chen, P.
Post, R. S.
author_facet Hoogendam, W. B.
Jones, D. O.
Ashall, C.
Shappee, B. J.
Foley, R. J.
Tucker, M. A.
Huber, M. E.
Auchettl, K.
Desai, D. D.
Do, A.
Hinkle, J. T.
Romagnoli, S.
Shi, J.
Syncatto, A.
Angus, C. R.
Chambers, K. C.
Coulter, D. A.
Davis, K. W.
de Boer, T.
Gagliano, A.
Kong, M.
Lin, C. -C.
Lowe, T. B.
Magnier, E. A.
Minguez, P.
Pan, Y. -C.
Patra, K. C.
Severson, S. A.
Taggart, K.
Wasserman, A. R.
Yadavalli, S. K.
Chen, P.
Post, R. S.
contents We present optical-to-near-infrared (NIR) photometry and spectroscopy of the Type Ia supernova (SN Ia) 2024epr, including NIR spectra observed within two days of first light. The early-time optical spectra show strong, high-velocity Ca and Si features near rarely-observed velocities at $\sim$0.1$c$, and the NIR spectra show a C I "knee." Despite early-time, high-velocity features, SN 2024epr evolves into a normal SN Ia, albeit with stronger peak-light Ca absorption than other SNe Ia with the same light curve shape. Although we infer a normal decline rate, $Δm_{15}(B)=1.09\pm0.12$ mag, from the light-curve rise, SN 2024epr is a Branch "cool" object and has red early-time colors ($g-r\approx0.15$ mag at $-10$ days). The high velocities point to a density enhancement in the outer layers of the explosion, predicted by some models, but thick-shell He-detonation models do not match the smoothly rising light curve or apparent lack of He in our early-time NIR spectra. No current models (e.g., delayed detonation or thin He shell double detonation) appear to reproduce all observed properties, particularly the unusual early-time colors. Such constraints are only possible for SN 2024epr from the earliest optical and NIR observations, highlighting their importance for constraining SN Ia models. Finally, we identify several literature SNe Ia with intermediate mass elements at $\sim$30\,000 km s$^{-1}$ within days after the explosion that evolve into otherwise normal SNe Ia at peak light, suggesting the early-time spectra of SNe Ia may hide a broad diversity of observational characteristics.
format Preprint
id arxiv_https___arxiv_org_abs_2502_17556
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Seeing the Outer Edge of the Infant Type Ia Supernova 2024epr in the Optical and Near Infrared
Hoogendam, W. B.
Jones, D. O.
Ashall, C.
Shappee, B. J.
Foley, R. J.
Tucker, M. A.
Huber, M. E.
Auchettl, K.
Desai, D. D.
Do, A.
Hinkle, J. T.
Romagnoli, S.
Shi, J.
Syncatto, A.
Angus, C. R.
Chambers, K. C.
Coulter, D. A.
Davis, K. W.
de Boer, T.
Gagliano, A.
Kong, M.
Lin, C. -C.
Lowe, T. B.
Magnier, E. A.
Minguez, P.
Pan, Y. -C.
Patra, K. C.
Severson, S. A.
Taggart, K.
Wasserman, A. R.
Yadavalli, S. K.
Chen, P.
Post, R. S.
High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
We present optical-to-near-infrared (NIR) photometry and spectroscopy of the Type Ia supernova (SN Ia) 2024epr, including NIR spectra observed within two days of first light. The early-time optical spectra show strong, high-velocity Ca and Si features near rarely-observed velocities at $\sim$0.1$c$, and the NIR spectra show a C I "knee." Despite early-time, high-velocity features, SN 2024epr evolves into a normal SN Ia, albeit with stronger peak-light Ca absorption than other SNe Ia with the same light curve shape. Although we infer a normal decline rate, $Δm_{15}(B)=1.09\pm0.12$ mag, from the light-curve rise, SN 2024epr is a Branch "cool" object and has red early-time colors ($g-r\approx0.15$ mag at $-10$ days). The high velocities point to a density enhancement in the outer layers of the explosion, predicted by some models, but thick-shell He-detonation models do not match the smoothly rising light curve or apparent lack of He in our early-time NIR spectra. No current models (e.g., delayed detonation or thin He shell double detonation) appear to reproduce all observed properties, particularly the unusual early-time colors. Such constraints are only possible for SN 2024epr from the earliest optical and NIR observations, highlighting their importance for constraining SN Ia models. Finally, we identify several literature SNe Ia with intermediate mass elements at $\sim$30\,000 km s$^{-1}$ within days after the explosion that evolve into otherwise normal SNe Ia at peak light, suggesting the early-time spectra of SNe Ia may hide a broad diversity of observational characteristics.
title Seeing the Outer Edge of the Infant Type Ia Supernova 2024epr in the Optical and Near Infrared
topic High Energy Astrophysical Phenomena
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2502.17556