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Investigating Possible Existence of Hyper-Heavy Nuclei in Neutron Star Environment

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arxiv 2205.00478 v1 pith:ZXCZGXTR submitted 2022-05-01 nucl-th astro-ph.HEnucl-ex

Investigating Possible Existence of Hyper-Heavy Nuclei in Neutron Star Environment

classification nucl-th astro-ph.HEnucl-ex
keywords neutronnucleistarenvironmenthyper-heavypossibleexistenceextremely
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The synthesis of hyper-heavy elements is investigated under conditions simulating neutron star environment. The Constrained Molecular Dynamics (CoMD) approach is used to simulate low energy collisions of extremely n-rich nuclei. A new type of the fusion barrier due to a "neutron wind" is observed when the effect of neutron star environment (screening of Coulomb interaction) is introduced implicitly. When introducing also a background of surrounding nuclei, the nuclear fusion becomes possible down to temperatures of 10$^{8}$ K and synthesis of extremely heavy and n-rich nuclei appears feasible. A possible existence of hyper-heavy nuclei in a neutron star environment could provide a mechanism of extra coherent neutrino scattering or an additional mechanism, resulting in X-ray burst or a gravitational wave signal and, thus, becoming another crucial process adding new information to the suggested models on neutron star evolution.

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