Cooling curves for neutron stars with hadronic matter and quark matter

Publication date

2011

Authors

Yin, S.
van Heugten, J. J. R. M.ISNI 0000000419536219
Diederix, J.M.ISNI 0000000397185461
Kater, M.
Vink, J.ISNI 0000000393608754
Stoof, HenkISNI 0000000116481361

Editors

Advisors

Supervisors

DOI

Document Type

Article
Open Access logo

License

Abstract

The thermal evolution of isothermal neutron stars is studied with matter both in the hadronic phase as well as in the mixed phase of hadronic matter and strange quark matter. In our models, the dominant early-stage cooling process is neutrino emission via the direct Urca process. As a consequence, the cooling curves fall too fast compared to observations. However, when superfluidity is included, the cooling of the neutron stars is significantly slowed down. Furthermore, we find that the cooling curves are not very sensitive to the precise details of the mixing between the hadronic phase and the quark phase and also of the pairing that leads to superfluidity

Keywords

Citation

Yin, S, van Heugten, J J R M, Diederix, J M, Kater, M, Vink, J & Stoof, H T C 2011, 'Cooling curves for neutron stars with hadronic matter and quark matter', Physical Review. C, Nuclear physics, vol. IN PRESS.