Early Shock-Cooling Observations and Progenitor Constraints of Type IIb SN 2024uwq

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Main Authors: Subrayan, Bhagya M., Sand, David J., Bostroem, K. Azalee, Jha, Saurabh W., Ravi, Aravind P., Schwab, Michaela, Andrews, Jennifer E., Hosseinzadeh, Griffin, Valenti, Stefano, Dong, Yize, Pearson, Jeniveve, Shrestha, Manisha, Kwok, Lindsey A., Hoang, Emily, Rho, Jeonghee, Park, Seong Hyun, Yoon, Sung-Chul, Geball, T. R., Haislip, Joshua, Janzen, Daryl, Kouprianov, Vladimir, Mehta, Darshana, Retamal, Nicolás Meza, Reichart, Daniel E., Andrews, Moira, Farah, Joseph, Newsome, Megan, Howell, D. Andrew, McCully, Curtis
Format: Preprint
Published: 2025
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author Subrayan, Bhagya M.
Sand, David J.
Bostroem, K. Azalee
Jha, Saurabh W.
Ravi, Aravind P.
Schwab, Michaela
Andrews, Jennifer E.
Hosseinzadeh, Griffin
Valenti, Stefano
Dong, Yize
Pearson, Jeniveve
Shrestha, Manisha
Kwok, Lindsey A.
Hoang, Emily
Rho, Jeonghee
Park, Seong Hyun
Yoon, Sung-Chul
Geball, T. R.
Haislip, Joshua
Janzen, Daryl
Kouprianov, Vladimir
Mehta, Darshana
Retamal, Nicolás Meza
Reichart, Daniel E.
Andrews, Moira
Farah, Joseph
Newsome, Megan
Howell, D. Andrew
McCully, Curtis
author_facet Subrayan, Bhagya M.
Sand, David J.
Bostroem, K. Azalee
Jha, Saurabh W.
Ravi, Aravind P.
Schwab, Michaela
Andrews, Jennifer E.
Hosseinzadeh, Griffin
Valenti, Stefano
Dong, Yize
Pearson, Jeniveve
Shrestha, Manisha
Kwok, Lindsey A.
Hoang, Emily
Rho, Jeonghee
Park, Seong Hyun
Yoon, Sung-Chul
Geball, T. R.
Haislip, Joshua
Janzen, Daryl
Kouprianov, Vladimir
Mehta, Darshana
Retamal, Nicolás Meza
Reichart, Daniel E.
Andrews, Moira
Farah, Joseph
Newsome, Megan
Howell, D. Andrew
McCully, Curtis
contents We present early multi-wavelength photometric and spectroscopic observations of the Type IIb supernova SN 2024uwq, capturing its shock-cooling emission phase and double-peaked light curve evolution. Early spectra reveal broad H-alpha (v ~ 15,500 km s$^{-1}$) and He I P-Cygni profiles of similar strengths. Over time the He I lines increase in strength while the H-alpha decreases, consistent with a hydrogen envelope ($M_{env}$ = 0.7 - 1.35 $M_\odot$ ) overlying helium-rich ejecta. Analytic modeling of early shock cooling emission and bolometric light analysis constrains the progenitor to a partially stripped star with radius R = 10 - 60 $R_\odot$, consistent with a blue/yellow supergiant with an initial ZAMS mass of 12 - 20 $M_\odot$ , likely stripped via binary interaction. SN 2024uwq occupies a transitional position between compact and extended Type IIb supernovae, highlighting the role of binary mass-transfer efficiency in shaping a continuum of stripped-envelope progenitors. Our results underscore the importance of both early UV/optical observations to characterize shock breakout signatures critical to map the diversity in evolutionary pathways of massive stars. Upcoming time domain surveys including Rubin Observatory's LSST and UV missions like ULTRASAT and UVEX will revolutionise our ability to systematically capture these early signatures, probing the full diversity of stripped progenitors and their explosive endpoints.
format Preprint
id arxiv_https___arxiv_org_abs_2505_02908
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Early Shock-Cooling Observations and Progenitor Constraints of Type IIb SN 2024uwq
Subrayan, Bhagya M.
Sand, David J.
Bostroem, K. Azalee
Jha, Saurabh W.
Ravi, Aravind P.
Schwab, Michaela
Andrews, Jennifer E.
Hosseinzadeh, Griffin
Valenti, Stefano
Dong, Yize
Pearson, Jeniveve
Shrestha, Manisha
Kwok, Lindsey A.
Hoang, Emily
Rho, Jeonghee
Park, Seong Hyun
Yoon, Sung-Chul
Geball, T. R.
Haislip, Joshua
Janzen, Daryl
Kouprianov, Vladimir
Mehta, Darshana
Retamal, Nicolás Meza
Reichart, Daniel E.
Andrews, Moira
Farah, Joseph
Newsome, Megan
Howell, D. Andrew
McCully, Curtis
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
Solar and Stellar Astrophysics
We present early multi-wavelength photometric and spectroscopic observations of the Type IIb supernova SN 2024uwq, capturing its shock-cooling emission phase and double-peaked light curve evolution. Early spectra reveal broad H-alpha (v ~ 15,500 km s$^{-1}$) and He I P-Cygni profiles of similar strengths. Over time the He I lines increase in strength while the H-alpha decreases, consistent with a hydrogen envelope ($M_{env}$ = 0.7 - 1.35 $M_\odot$ ) overlying helium-rich ejecta. Analytic modeling of early shock cooling emission and bolometric light analysis constrains the progenitor to a partially stripped star with radius R = 10 - 60 $R_\odot$, consistent with a blue/yellow supergiant with an initial ZAMS mass of 12 - 20 $M_\odot$ , likely stripped via binary interaction. SN 2024uwq occupies a transitional position between compact and extended Type IIb supernovae, highlighting the role of binary mass-transfer efficiency in shaping a continuum of stripped-envelope progenitors. Our results underscore the importance of both early UV/optical observations to characterize shock breakout signatures critical to map the diversity in evolutionary pathways of massive stars. Upcoming time domain surveys including Rubin Observatory's LSST and UV missions like ULTRASAT and UVEX will revolutionise our ability to systematically capture these early signatures, probing the full diversity of stripped progenitors and their explosive endpoints.
title Early Shock-Cooling Observations and Progenitor Constraints of Type IIb SN 2024uwq
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2505.02908