Superfluid properties of the inner crust of neutron stars
Pastore, A., Baroni, S., & Losa, C. (2011). Superfluid properties of the inner crust of neutron stars. Physical Review C, 84, 65807. https://doi.org/10.1103/PhysRevC.84.054321
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Physical Review CDate
2011Copyright
© 2011 American Physical Society. Published in this repository with the kind permission of the publisher.
We investigated the superfluid properties of the inner crust of neutron stars, solving the Hartree-FockBogoliubov
equations in spherical Wigner-Seitz cells. Using realistic two-body interactions in the pairing channel,
we studied in detail the Cooper-pair and the pairing-field spatial properties, together with the effect of the proton
clusters on the neutron pairing gap. Calculations with effective pairing interactions are also presented, showing
significant discrepancies with the results obtained with realistic pairing forces. At variance with recent studies
on finite nuclei, the neutron coherence length is found to depend on the strength of the pairing interaction, even
inside the nucleus. We also show that the spherical Wigner-Seitz approximation breaks down in the innermost
regions of the inner crust, already at baryonic densities ρb 8 × 10+13 g/cm3.
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American Physical SocietyISSN Search the Publication Forum
0556-2813Keywords
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