DOE OSTI · 1987717
Superheavy Elements in Kilonovae
Abstract
Abstract As LIGO-Virgo-KAGRA enters its fourth observing run, a new opportunity to search for electromagnetic counterparts of compact object mergers will also begin. The light curves and spectra from the first “kilonova” associated with a binary neutron star merger (NSM) suggests that these sites are hosts of the rapid neutron capture (“ r ”) process. However, it is unknown just how robust elemental production can be in mergers. Identifying signposts of the production of particular nuclei is critical for fully understanding merger-driven heavy-element synthesis. In this study, we investigate the properties of very neutron-rich nuclei for which superheavy elements ( Z ≥ 104) can be produced in NSMs and whether they can similarly imprint a unique signature on kilonova light-curve evolution. A superheavy-element signature in kilonovae represents a route to establishing a lower limit on heavy-element production in NSMs as well as possibly being the first evidence of superheavy-element synthesis in nature. Favorable NSM conditions yield a mass fraction of superheavy elements X Z ≥104 ≈ 3 × 10 −2 at 7.5 hr post-merger. With this mass fraction of superheavy elements, we find that the component of kilonova light curves possibly containing superheavy elements may appear similar to those arising from lanthanide-poor ejecta. Therefore, photometric characterizations of superheavy-element rich kilonova may possibly misidentify them as lanthanide-poor events.
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Holmbeck, Erika M. (ORCID:0000000254636800), Barnes, Jennifer (ORCID:0000000333404784), Lund, Kelsey A. (ORCID:0000000300311397), Sprouse, Trevor M. (ORCID:0000000243754369), McLaughlin, G. C. (ORCID:0000000168116657), Mumpower, Matthew R. (ORCID:0000000299509688). 2023-06-29. Superheavy Elements in Kilonovae. https://doi.org/10.3847/2041-8213%2Facd9cb
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