Variability of Late-time Radio Emission in SLSN PTF10hgi
arXiv:2103.09374 · doi:10.3847/2041-8213/abef03
Abstract
We report the time variability of the late-time radio emission in a Type-I superluminous supernova (SLSN), PTF10hgi, at z = 0.0987. The Karl G. Jansky Very Large Array 3 GHz observations at 8.6 and 10 years after the explosion both detected radio emission with a ~40% decrease in flux density in the second epoch. This is the first report of a significant variability of the late-time radio light curve in a SLSN. Through combination with previous measurements in two other epochs, we constrained both the rise and decay phases of the radio light curve over three years, peaking at approximately 8-9 years after the explosion with a peak luminosity of L(3GHz) = 2 x 10^21 W/Hz. Possible scenarios for the origin of the variability are an active galactic nucleus (AGN) in the host galaxy, an afterglow caused by the interaction between an off-axis jet and circumstellar medium, and a wind nebula powered by a newly-born magnetar. Comparisons with models show that the radio light curve can be reproduced by both the afterglow model and magnetar wind nebula model. Considering the flat radio spectrum at 1-15 GHz and an upper limit at 0.6 GHz obtained in previous studies, plausible scenarios are a low-luminosity flat-spectrum AGN or a magnetar wind nebula with a shallow injection spectral index.
9 pages, 4 figures, accepted for publication in ApJ Letters
References in corpus (8)
- Pulsational pair instability as an explanation for the most luminous supernovae
- The Unique Type Ib Supernova 2005bf at Nebular Phases: A Possible Birth Event of A Strongly Magnetized Neutron Star
- Gamma-Ray and Hard X-Ray Emission from Pulsar-Aided Supernovae as a Probe of Particle Acceleration in Embryonic Pulsar Wind Nebulae
- A Multi-wavelength Analysis of the Faint Radio Sky (COSMOS-XS): the Nature of the Ultra-faint Radio Population
- A Search for Late-Time Radio Emission and Fast Radio Bursts from Superluminous Supernovae
- Radio emission from a decade old Type I superluminous supernova, PTF10hgi: Comparison with FRB121102
- CHILES VERDES: Radio variability at an unprecedented depth and cadence in the COSMOS field
- An insight into the extragalactic transient and variable microJy radio sky across multiple decades
Cited by in corpus (9)
- Towards Nebular Spectral Modeling of Magnetar-Powered Supernovae
- ALMA and NOEMA constraints on synchrotron nebular emission from embryonic superluminous supernova remnants and radio-gamma-ray connection
- A Generalized Semi-Analytic Model for Magnetar-Driven Supernovae
- SN2020qlb: A hydrogen-poor superluminous supernova with well-characterized light curve undulations
- Expectations for Fast Radio Bursts in Neutron Star-Massive Star binaries
- Post maximum light and late time optical imaging polarimetry of type I superluminous supernova 2020znr
- SN 2020zbf: A fast-rising hydrogen-poor superluminous supernova with strong carbon lines
- A VLA Survey of Late-time Radio Emission from Superluminous Supernovae and the Host Galaxies
- AT2019ijn: a fast-rising, slow-decaying blue optical transient with exceptionally bright radio emission