An ultraviolet excess in the superluminous supernova Gaia16apd reveals a powerful central engine
arXiv:1611.06993 · doi:10.3847/2041-8213/aa56c5
Abstract
Since the discovery of superluminous supernovae (SLSNe) in the last decade, it has been known that these events exhibit bluer spectral energy distributions than other supernova subtypes, with significant output in the ultraviolet. However, the event Gaia16apd seems to outshine even the other SLSNe at rest-frame wavelengths below Å. Yan et al (2016) have recently presented HST UV spectra and attributed the UV flux to low metallicity and hence reduced line blanketing. Here we present UV and optical light curves over a longer baseline in time, revealing a rapid decline at UV wavelengths despite a typical optical evolution. Combining the published UV spectra with our own optical data, we demonstrate that Gaia16apd has a much hotter continuum than virtually any SLSN at maximum light, but it cools rapidly thereafter and is indistinguishable from the others by -15 days after peak. Comparing the equivalent widths of UV absorption lines with those of other events, we show that the excess UV continuum is a result of a more powerful central power source, rather than a lack of UV absorption relative to other SLSNe or an additional component from interaction with the surrounding medium. These findings strongly support the central-engine hypothesis for hydrogen-poor SLSNe. An explosion ejecting M, where is the opacity in cmg, and forming a magnetar with spin period ms, and G (lower than other SLSNe with comparable rise-times) can consistently explain the light curve evolution and high temperature at peak. The host metallicity, Z, is comparable to other SLSNe.
Updated to match accepted version (ApJL)
References in corpus (10)
- Pulsational pair instability as an explanation for the most luminous supernovae
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- The Superluminous Transient ASASSN-15lh as a Tidal Disruption Event from a Kerr Black Hole
- Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies
- Numerical simulations of super-luminous supernovae of type IIn
- The hydrogen-poor superluminous supernova iPTF13ajg and its host galaxy in absorption and emission
- Superluminous supernova 2015bn in the nebular phase: evidence for the engine-powered explosion of a stripped massive star
- Spectropolarimetry of superluminous supernovae: insight into their geometry
- The host galaxy of the super-luminous SN 2010gx and limits on explosive nickel-56 production
- Super Luminous Supernovae as standardizable candles and high redshift distance probes
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