Universe | |
A Superfluid Perspective on Neutron Star Dynamics | |
Nils Andersson1  | |
[1] Mathematical Sciences and STAG Research Centre, University of Southampton, Southampton SO17 1BJ, UK; | |
关键词: neutron stars; superfluidity; hydrodynamics; | |
DOI : 10.3390/universe7010017 | |
来源: DOAJ |
【 摘 要 】
As mature neutron stars are cold (on the relevant temperature scale), one has to carefully consider the state of matter in their interior. The outer kilometre or so is expected to freeze to form an elastic crust of increasingly neutron-rich nuclei, coexisting with a superfluid neutron component, while the star’s fluid core contains a mixed superfluid/superconductor. The dynamics of the star depend heavily on the parameters associated with the different phases. The presence of superfluidity brings new degrees of freedom—in essence we are dealing with a complex multi-fluid system—and additional features: bulk rotation is supported by a dense array of quantised vortices, which introduce dissipation via mutual friction, and the motion of the superfluid is affected by the so-called entrainment effect. This brief survey provides an introduction to—along with a commentary on our current understanding of—these dynamical aspects, paying particular attention to the role of entrainment, and outlines the impact of superfluidity on neutron-star seismology.
【 授权许可】
Unknown