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The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. IV. Detection of Near-infrared Signatures of r-process Nucleosynthesis with Gemini-South

The Astrophysical Journal Letters · 2017 · Vol. 848(2) · pp. L19–L19
R. ChornockE. BergerD. KasenP. S. CowperthwaiteM. NichollV. A. VillarK. D. AlexanderP. K. BlanchardT. EftekhariW. FongR. MarguttiP. K. G. WilliamsJ. AnnisD. BroutD. A. BrownH.-Y. ChenM. R. DroutB. FarrR. J. FoleyJ. A. FriemanC. L. FryerK. HernerD. E. HolzR. KesslerT. MathesonB. D. MetzgerE. QuataertA. RestM. SakoD. M. ScolnicN. SmithM. Soares-Santos

Abstract

Abstract We present a near-infrared spectral sequence of the electromagnetic counterpart to the binary neutron star merger GW170817 detected by Advanced Laser Interferometer Gravitational-wave Observatory (LIGO)/Virgo. Our data set comprises seven epochs of J + H spectra taken with FLAMINGOS-2 on Gemini-South between 1.5 and 10.5 days after the merger. In the initial epoch, the spectrum is dominated by a smooth blue continuum due to a high-velocity, lanthanide-poor blue kilonova component. Starting the following night, all of the subsequent spectra instead show features that are similar to those predicted in model spectra of material with a high concentration of lanthanides, including spectral peaks near 1.07 and 1.55 μ m. Our fiducial model with 0.04 M ⊙ of ejecta, an ejection velocity of v = 0.1 c , and a lanthanide concentration of X lan = 10 −2 provides a good match to the spectra taken in the first five days, although it over-predicts the late-time fluxes. We also explore models with multiple fitting components, in each case finding that a significant abundance of lanthanide elements is necessary to match the broad spectral peaks that we observe starting at 2.5 days after the merger. These data provide direct evidence that binary neutron star mergers are significant production sites of even the heaviest r -process elements.

Gamma-ray bursts and supernovaePulsars and Gravitational Waves ResearchAstrophysical Phenomena and ObservationsSpectral lineNeutron starNucleosynthesisKilonovaBinary numberObservatoryNeutron

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • National Aeronautics and Space Administration
  • Alfred P. Sloan Foundation
  • Gordon and Betty Moore Foundation
  • Space Telescope Science Institute
  • National Research Foundation
  • Danmarks Grundforskningsfond
  • Ministerio de Ciencia, Tecnología e Innovación Productiva
  • Ministério da Ciência, Tecnologia e Inovação
  • Office of Science
  • Comisión Nacional de Investigación Científica y Tecnológica
  • High Energy Physics
  • Nuclear Physics
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