Relativistic Hartree-Bogoliubov plus combinatorial calculations reproduce experimental nuclear level densities and s-wave neutron resonance spacings with accuracy comparable to the best existing global models.
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Hybrid star model with core quark pasta pinning superfluid vortices produces glitch amplitudes ΔΩ/Ω of order 10^{-6} matching Vela-like pulsar observations.
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Nuclear level densities in the relativistic Hartree-Bogoliubov plus combinatorial framework
Relativistic Hartree-Bogoliubov plus combinatorial calculations reproduce experimental nuclear level densities and s-wave neutron resonance spacings with accuracy comparable to the best existing global models.
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Modeling large glitches with core superfluidity in a Hybrid star
Hybrid star model with core quark pasta pinning superfluid vortices produces glitch amplitudes ΔΩ/Ω of order 10^{-6} matching Vela-like pulsar observations.