Javascript must be enabled to continue!
Search for Supernova Progenitor Stars with ZTF and LSST
View through CrossRef
Abstract
The direct detection of core-collapse supernova (SN) progenitor stars is a powerful way of probing the last stages of stellar evolution. However, detections in archival Hubble Space Telescope images are limited to about one detection per year. Here, we explore whether we can increase the detection rate by using data from ground-based wide-field surveys. Due to crowding and atmospheric blurring, progenitor stars can typically not be identified in preexplosion images alone. Instead, we combine many pre-SN and late-time images to search for the disappearance of the progenitor star. As a proof of concept, we implement our search of ZTF data. For a few hundred images, we achieve limiting magnitudes of ∼23 mag in the g and r bands. However, no progenitor stars or long-lived outbursts are detected for 29 SNe within z ≤ 0.01, and the ZTF limits are typically several magnitudes less constraining than detected progenitors in the literature. Next, we estimate progenitor detection rates for the Legacy Survey of Space and Time (LSST) with the Vera C. Rubin telescope by simulating a population of nearby SNe. The background from bright host galaxies reduces the nominal LSST sensitivity by, on average, 0.4 mag. Over the 10 yr survey, we expect the detection of ∼50 red supergiant progenitors and several yellow and blue supergiants. The progenitors of Type Ib and Ic SNe will be detectable if they are brighter than −4.7 or −4.0 mag in the LSST i band, respectively. In addition, we expect the detection of hundreds of pre-SN outbursts depending on their brightness and duration.
Title: Search for Supernova Progenitor Stars with ZTF and LSST
Description:
Abstract
The direct detection of core-collapse supernova (SN) progenitor stars is a powerful way of probing the last stages of stellar evolution.
However, detections in archival Hubble Space Telescope images are limited to about one detection per year.
Here, we explore whether we can increase the detection rate by using data from ground-based wide-field surveys.
Due to crowding and atmospheric blurring, progenitor stars can typically not be identified in preexplosion images alone.
Instead, we combine many pre-SN and late-time images to search for the disappearance of the progenitor star.
As a proof of concept, we implement our search of ZTF data.
For a few hundred images, we achieve limiting magnitudes of ∼23 mag in the g and r bands.
However, no progenitor stars or long-lived outbursts are detected for 29 SNe within z ≤ 0.
01, and the ZTF limits are typically several magnitudes less constraining than detected progenitors in the literature.
Next, we estimate progenitor detection rates for the Legacy Survey of Space and Time (LSST) with the Vera C.
Rubin telescope by simulating a population of nearby SNe.
The background from bright host galaxies reduces the nominal LSST sensitivity by, on average, 0.
4 mag.
Over the 10 yr survey, we expect the detection of ∼50 red supergiant progenitors and several yellow and blue supergiants.
The progenitors of Type Ib and Ic SNe will be detectable if they are brighter than −4.
7 or −4.
0 mag in the LSST i band, respectively.
In addition, we expect the detection of hundreds of pre-SN outbursts depending on their brightness and duration.
Related Results
Sorcha: A Solar System Survey Simulator for the Legacy Survey of Space and Time
Sorcha: A Solar System Survey Simulator for the Legacy Survey of Space and Time
The Vera C. Rubin Observatory Legacy Survey of Space and Time (LSST) will provide an unprecedented dataset to explore the Solar System’s small body inventory. The survey will disco...
Distant Resonances in the Outer Solar System
Distant Resonances in the Outer Solar System
The outer Solar System preserves a reservoir of material from the formation of our planetary system and provides evidence of the distant past. Objects in the Trans-Neptunian region...
Predictions of the LSST Solar System Yield: Near-Earth Objects, Main Belt Asteroids, Jupiter Trojans, and Trans-Neptunian Objects
Predictions of the LSST Solar System Yield: Near-Earth Objects, Main Belt Asteroids, Jupiter Trojans, and Trans-Neptunian Objects
The NSF-DOE Vera C. Rubin Observatory is a new 8m-class survey facility presently being commissioned in Chile, expected to begin the 10yr-long Legacy Survey of Space and Time (LSST...
Cosmologie et supernovas Ia : influence des vitesses propres et recherche d'anisotropies avec LSST
Cosmologie et supernovas Ia : influence des vitesses propres et recherche d'anisotropies avec LSST
Les supernovas de type Ia (SNIa) sont des objets transitoires, observables pour une durée de quelques mois et dont la luminosité à son maximum équivaut à celle d'une galaxie entièr...
Analisis Nilai Moral Novel Kembara Karya Pradana Boy ZTF
Analisis Nilai Moral Novel Kembara Karya Pradana Boy ZTF
The purpose of this study is to describe the moral values contained in the novel Kembara Karya Pradana Boy ZTF. This study uses qualitative methods with qualitative descriptive r...
W Acana Sains Dalam Novel Supernova Episode Ksatria, Puteri, Dan Bintang Jatuh
W Acana Sains Dalam Novel Supernova Episode Ksatria, Puteri, Dan Bintang Jatuh
This paper is aimed to describe the stories of Supernova 1 to identify the fiction and non• fiction dialectics and also to represent science aspect in Supernova novel Episode Ksatr...
ANALISIS BILINGUALISME PADA NOVEL SUPERNOVA AKAR KARYA DEWI LESTARI
ANALISIS BILINGUALISME PADA NOVEL SUPERNOVA AKAR KARYA DEWI LESTARI
This study aims to find out, how the analysis of bilingualism on Supernova novel Akar by Dewi Lestari specifically examine 1) How is the form of switch code on Novel Supernova Akar...
Wolf–Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
Wolf–Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
Context. The majority of the Wolf–Rayet (WR) stars represent the stripped cores of evolved massive stars who lost most of their hydrogen envelope. Wind stripping in single stars is...

