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r-Process Lanthanide Production and Heating Rates in Kilonovae

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arxiv 1508.03133 v2 pith:A2KVQOK5 submitted 2015-08-13 astro-ph.HE

classification astro-ph.HE
keywords heatingejectaratelanthanide-freelightpeakr-processrates
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abstract

r-Process nucleosynthesis in material ejected during neutron star mergers may lead to radioactively powered transients called kilonovae. The timescale and peak luminosity of these transients depend on the composition of the ejecta, which determines the local heating rate from nuclear decays and the opacity. Kasen et al. (2013, ApJ, 774, 25) and Tanaka & Hotokezaka (2013, ApJ, 775, 113) pointed out that lanthanides can drastically increase the opacity in these outflows. We use the new general-purpose nuclear reaction network SkyNet to carry out a parameter study of r-process nucleosynthesis for a range of initial electron fractions $Y_e$, initial specific entropies $s$, and expansion timescales $\tau$. We find that the ejecta is lanthanide-free for $Y_e \gtrsim 0.22 - 0.30$, depending on $s$ and $\tau$. The heating rate is insensitive to $s$ and $\tau$, but certain, larger values of $Y_e$ lead to reduced heating rates, due to individual nuclides dominating the heating. We calculate approximate light curves with a simplified gray radiative transport scheme. The light curves peak at about a day (week) in the lanthanide-free (-rich) cases. The heating rate does not change much as the ejecta becomes lanthanide-free with increasing $Y_e$, but the light curve peak becomes about an order of magnitude brighter because it peaks much earlier when the heating rate is larger. We also provide parametric fits for the heating rates between 0.1 and $100\,\text{days}$, and we provide a simple fit in $Y_e$, $s$, and $\tau$ to estimate whether the ejecta is lanthanide-rich or not.

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Forward citations

Cited by 5 Pith papers

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  2. Black hole-neutron star binaries with high spins and large mass asymmetries: III. Properties of the ejected material and its electromagnetic signatures

    gr-qc 2026-07 conditional novelty 6.0 of 10

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  3. Unequal Mass Binary Neutron Star Simulations with Neutrino Transport: Ejecta and Neutrino Emission

    gr-qc 2019-08 conditional novelty 6.0 of 10

    New simulations of unequal-mass neutron star mergers find that only the softest equation of state ejects more than 0.01 solar masses of dynamical ejecta, and that ejecta speed and electron fraction drop as the mass ra...

  4. Kilonovae

    astro-ph.HE 2019-08 unverdicted novelty 2.0 of 10

    Kilonova theory, including the blue and red two-component picture, is reviewed and shown to match the observed GW170817 counterpart, with predictive extensions for future mergers.

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    astro-ph.HE 2026-07 conditional novelty 1.0 of 10

    An updated expert review of Newtonian and general-relativistic SPH for compact-object mergers, arguing that modern SPH variants with better kernels, steered dissipation and reproducing gradients match grid-based codes...

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