The detection rate of early UV emission from supernovae: A dedicated GALEX/PTF survey and calibrated theoretical estimates
arXiv:1412.4063 · doi:10.3847/0004-637X/820/1/57
Abstract
The radius and surface composition of an exploding massive star,as well as the explosion energy per unit mass, can be measured using early UV observations of core collapse supernovae (SNe). We present the first results from a simultaneous GALEX/PTF search for early UV emission from SNe. Six Type II SNe and one Type II superluminous SN (SLSN-II) are clearly detected in the GALEX NUV data. We compare our detection rate with theoretical estimates based on early, shock-cooling UV light curves calculated from models that fit existing Swift and GALEX observations well, combined with volumetric SN rates. We find that our observations are in good agreement with calculated rates assuming that red supergiants (RSGs) explode with fiducial radii of 500 solar, explosion energies of 10^51 erg, and ejecta masses of 10 solar masses. Exploding blue supergiants and Wolf-Rayet stars are poorly constrained. We describe how such observations can be used to derive the progenitor radius, surface composition and explosion energy per unit mass of such SN events, and we demonstrate why UV observations are critical for such measurements. We use the fiducial RSG parameters to estimate the detection rate of SNe during the shock-cooling phase (<1d after explosion) for several ground-based surveys (PTF, ZTF, and LSST). We show that the proposed wide-field UV explorer ULTRASAT mission, is expected to find >100 SNe per year (~0.5 SN per deg^2), independent of host galaxy extinction, down to an NUV detection limit of 21.5 mag AB. Our pilot GALEX/PTF project thus convincingly demonstrates that a dedicated, systematic SN survey at the NUV band is a compelling method to study how massive stars end their life.
See additional information including animations on http://www.weizmann.ac.il/astrophysics/ultrasat
References in corpus (16)
- Pre-Supernova Evolution of Massive Single and Binary Stars
- A giant outburst two years before the core-collapse of a massive star
- Characterizing the V-band light-curves of hydrogen-rich type II supernovae
- A Wolf-Rayet-like progenitor of supernova SN 2013cu from spectral observations of a wind
- Precursors prior to Type IIn supernova explosions are common: precursor rates, properties, and correlations
- Early-time light curves of Type Ib/c supernovae from the SDSS-II Supernova Survey
- Photometric and Spectroscopic Properties of Type II-P Supernovae
- A Sample of Type II-L Supernovae
- Supernovae with Two Peaks in the Optical Light Curve and the Signature of Progenitors with Low-mass Extended Envelopes
- Supernova Shock Breakout from a Red Supergiant
- Probing Shock Breakout with Serendipitous GALEX Detections of Two SNLS Type II-P Supernovae
- Interaction-powered supernovae: Rise-time vs. peak-luminosity correlation and the shock-breakout velocity
- SN 2012ec: mass of the progenitor from PESSTO follow-up of the photospheric phase
- Spectrum and light curve of a supernova shock breakout through a thick Wolf-Rayet wind
- Extended supernova shock breakout signals from inflated stellar envelopes
- Numeric spectral radiation hydrodynamic calculations of supernova shock breakouts
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- The Zwicky Transient Facility: Science Objectives
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- UV/Optical emission from the expanding envelopes of type II supernovae
- A New, Faint Population of X-ray Transients
- Type IIn supernova light-curve properties measured from an untargeted survey sample
- The GRB-SLSN Connection: mis-aligned magnetars, weak jet emergence, and observational signatures
- Extragalactic FXT Candidates Discovered by Chandra (2014-2022)
- Optical to X-ray Signatures of Dense Circumstellar Interaction in Core-Collapse Supernovae
- Prediction of Supernova Rates in Known Galaxy-galaxy Strong-lens Systems
- Inferencing Progenitor and Explosion Properties of Evolving Core-collapse Supernovae from Zwicky Transient Facility Light Curves
- Supernova PTF12glz: a possible shock breakout driven through an aspherical wind
- Late-Onset Circumstellar Medium Interactions are Rare: An Unbiased GALEX View of Type Ia Supernovae
- Wide-field Ultraviolet Imager for Astronomical Transient Studies
- Design of the ULTRASAT UV camera
- Theoretical X-ray light curves of young SNe II: the example of SN 2013ej
- Forecasting Supernova Observations with the CSST: I. Photometric Samples
- Exploring GRBs and supernovae connection: does a superluminous hypernova population exist?
- Search for Ultraviolet Luminous Objects in GALEX data
- The Near Ultraviolet Transient Surveyor (NUTS): An ultraviolet telescope to observe variable sources