Transport Properties of the Nuclear Pasta Phase with Quantum Molecular Dynamics
Abstract
We study the transport properties of nuclear pasta for a wide range of density, temperature, and proton fractions, relevant for different astrophysical scenarios adopting a quantum molecular dynamics model. In particular, we estimate the values of shear viscosity as well as electrical and thermal conductivities by calculating the static structure factor S(q) using simulation data. In the density and temperature range where the pasta phase appears, the static structure factor shows irregular behavior. The presence of a slab phase greatly enhances the peak in S(q). However, the effect of irregularities in S(q) on the transport coefficients is not very dramatic. The values of all three transport coefficients are found to have the same orders of magnitude as found in theoretical calculations for the inner crust matter of neutron stars without the pasta phase; therefore, the values are in contrast to earlier speculations that a pasta layer might be highly resistive, both thermally and electrically.
- Publication:
-
The Astrophysical Journal
- Pub Date:
- January 2018
- DOI:
- arXiv:
- arXiv:1709.09793
- Bibcode:
- 2018ApJ...852..135N
- Keywords:
-
- stars: neutron;
- supernovae: general;
- Astrophysics - High Energy Astrophysical Phenomena;
- Nuclear Theory
- E-Print:
- version accepted in ApJ