Discovery of a 760 nm P Cygni line in AT2017gfo: Identification of yttrium in the kilonova photosphere
arXiv:2306.14942 · doi:10.1051/0004-6361/202346421
Abstract
Neutron star mergers are believed to be a major cosmological source of rapid neutron-capture elements. The kilonovae associated with neutron star mergers have to date yielded only a single well-identified spectral signature: the P Cygni line of Sr at about 1m in the spectra of the optical transient, AT2017gfo. Such P Cygni lines are important, because they provide significant information not just potentially on the elemental composition of the merger ejecta, but also on the velocity, geometry, and abundance stratification of the explosion. In this paper we show evidence for a previously unrecognised P Cygni line in the spectra of AT2017gfo that emerges several days after the explosion, located at nm. We show that the feature is well-reproduced by 4d-4d5p transitions of Y, which have a weighted mean wavelength around 760-770 nm, with the most prominent line at 788.19 nm. While the observed line is weaker than the Sr feature, the velocity stratification of the new line provides an independent constraint on the expansion rate of the ejecta similar to the constraints from Sr.
11 pages, 7 figures, Accepted in A&A
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- The Science of the Einstein Telescope
- Self-consistent 3D radiative transfer for kilonovae: directional spectra from merger simulations
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- Measuring the Hubble constant with kilonovae using the Expanding Photosphere Method
- Emergence hour-by-hour of -process features in the kilonova AT2017gfo
- Actinide signatures in low electron fraction kilonova ejecta
- New Radiative and Collisional Atomic Data for Sr {\sc ii} and Y {\sc ii} with application to Kilonova modelling
- KilonovAE: Exploring Kilonova Spectral Features with Autoencoders
- Kilonova evolution -- the rapid emergence of spectral features
- Helium features are inconsistent with the spectral evolution of the kilonova AT2017gfo
- Improved lanthanide constraints for the kilonova AT 2017gfo
- Luminosity predictions for the first three ionisation stages of W, Pt and Au to probe potential sources of emission in kilonova
- Spectral synthesis techniques for supernovae and kilonovae
- Impact of Ejecta Temperature and Mass on the Strength of Heavy Element Signatures in Kilonovae
- Modeling the emission lines from r-process elements in Supernova nebulae
- Light Travel Time Effects in Kilonova Models
- Inferring kilonova ejecta photospheric properties from early blackbody spectra
- Electron impact excitation of Te IV and V and Level Resolved R-matrix Photoionization of Te I - IV with application to modelling of AT2017gfo