Superfluid dynamics in neutron star crusts: the Iordanskii force and chemical gauge covariance
arXiv:2012.10288 · doi:10.3390/universe7020028
Abstract
We present a geometrical derivation of the relativistic dynamics of the superfluid inner crust of a neutron star. The resulting model is analogous to the Hall-Vinen-Bekarevich-Khalatnikov hydrodynamics for a single-component superfluid at finite temperature, but particular attention should be paid to the fact that some fraction of the neutrons are locked to the motion of the protons in nuclei. This gives rise to an ambiguity in the definition of the two currents (the normal and the superfluid one) on which the model is built, a problem that manifests itself as a chemical gauge freedom of the theory. To ensure chemical gauge covariance of the hydrodynamic model, the phenomenological equation of motion for a quantized vortex should contain an extra transverse force, that is the relativistic version of the Iordanskii force discussed in the context of superfluid Helium. Hence, we extend the mutual friction model of Langlois et al. (1998) to account for the possible presence of this Iordanskii-like force. Furthermore, we propose that a better understanding of the (still not completely settled) controversy around the presence of the Iordanskii force in superfluid Helium, as well as in neutron stars, may be achieved by considering that the different incompatible results present in the literature pertain to two, opposite, dynamical regimes of the fluid system.
36 pages, 1 figure, see https://doi.org/10.3390/universe7020028
References in corpus (8)
- Models of Pulsar Glitches
- Low-energy collective excitations in the neutron star inner crust
- Bulk viscosity of superfluid neutron stars
- Global numerical simulations of the rise of vortex-mediated pulsar glitches in full general relativity
- Relativistic dynamics of superfluid-superconducting mixtures in the presence of topological defects and an electromagnetic field with application to neutron stars
- Newtonian mechanics of neutron superfluid in elastic star crust
- Force on a neutron quantised vortex pinned to proton fluxoids in the superfluid core of cold neutron stars
- Generalization of the Kutta-Joukowski theorem for the hydrodynamic forces acting on a quantized vortex
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