English

Gamma-Ray Emission Produced by $r$-process Elements from Neutron Star Mergers

High Energy Astrophysical Phenomena 2021-10-04 v1

Abstract

The observation of a radioactively powered kilonova AT~2017gfo associated with the gravitational wave-event GW170817 from binary neutron star merger proves that these events are ideal sites for the production of heavy rr-process elements. The gamma-ray photons produced by the radioactive decay of heavy elements are unique probes for the detailed nuclide compositions. Basing on the detailed rr-process nucleosynthesis calculations and considering radiative transport calculations for the gamma-rays in different shells, we study the gamma-ray emission in a merger ejecta on a timescale of a few days. It is found that the total gamma-ray energy generation rate evolution is roughly depicted as E˙t1.3\dot{E}\propto t^{-1.3}. For the dynamical ejecta with a low electron fraction (Ye0.20Y_{\rm e}\lesssim0.20), the dominant contributors of gamma-ray energy are the nuclides around the second rr-process peak (A130A\sim130), and the decay chain of 132^{132}Te (t1/2=3.21t_{1/2}=3.21~days) \rightarrow 132^{132}I (t1/2=0.10t_{1/2}=0.10~days) \rightarrow 132^{132}Xe produces gamma-ray lines at 228228 keV, 668668 keV, and 773773 keV. For the case of a wind ejecta with Ye0.30Y_{\rm e}\gtrsim0.30, the dominant contributors of gamma-ray energy are the nuclides around the first rr-process peak (A80A\sim80), and the decay chain of 72^{72}Zn (t1/2=1.93t_{1/2}=1.93~days) \rightarrow 72^{72}Ga (t1/2=0.59t_{1/2}=0.59~days) \rightarrow 72^{72}Ge produces gamma-ray lines at 145145 keV, 834834 keV, 22022202 keV, and 25082508 keV. The peak fluxes of these lines are 10910710^{-9}\sim 10^{-7}~ph~cm2^{-2} s1^{-1}, which are marginally detectable with the next-generation MeV gamma-ray detector \emph{ETCC} if the source is at a distance of 4040~Mpc.

Keywords

Cite

@article{arxiv.2107.02982,
  title  = {Gamma-Ray Emission Produced by $r$-process Elements from Neutron Star Mergers},
  author = {Meng-Hua Chen and Li-Xin Li and Da-Bin Lin and En-Wei Liang},
  journal= {arXiv preprint arXiv:2107.02982},
  year   = {2021}
}

Comments

24 pages, 7 figures, 2 tables, accepted for publication in ApJ

R2 v1 2026-06-24T03:57:12.990Z