Glassy quantum nuclear pasta in neutron star crusts
arXiv:2104.11835 · doi:10.1103/PhysRevC.105.025806
Abstract
We investigate the nuclear pasta phases in neutron star crusts by conducting a large number of three-dimensional Hartree-Fock+BCS calculations at densities leading to the crust-core transition. We survey the shape parameter space of pasta at constant pressure. Spaghetti, waffles, lasagna, bi-continuous phases and cylindrical holes occupy local minima in the resulting Gibbs energy surfaces. The bi-continuous phase, in which both the neutron gas and nuclear matter extend continuously in all dimensions and therefore protons are delocalized, appears over a large range of depths. Our results support the idea that nuclear pasta is a glassy system. Multiple pasta configurations coexist in a given layer of the crust. At a characteristic temperature, of order -K, different phases become frozen into domains whose sizes we estimate to be 1-50 times the lattice spacing and over which the local density and electron fraction can vary. Above this temperature, there is very little long-range order and matter is an amorphous solid. Electron scattering off domain boundaries may contribute to the disorder resistivity of the pasta phases. Annealing of the domains may occur during cooling; repopulating of local minima during crustal heating might lead to temperature dependent transport properties in the deep layers of the crust. We identify 4 distinct regions: (1) nuclear pasta first appears as a local minima, but spherical nuclei are the ground state; (2) nuclear pasta become the absolute minimum, but spherical nuclei are still a local minimum (3) only nuclear pasta appears in local minima, and protons are still localized in at least one dimension (4) only pasta appears, and protons are delocalized. The whole pasta region can occupy up to 70% of the crust by mass and 40% by thickness, and the layer in which protons are delocalized could occupy 45% of the crust mass and 25% of its thickness.
32 pages, 23 figures, submitted to Physical Review C
References in corpus (14)
- Disordered nuclear pasta, magnetic field decay, and crust cooling in neutron stars
- Fusion reactions in multicomponent dense matter
- Pasta Nucleosynthesis: Molecular dynamics simulations of nuclear statistical equilibrium
- Nuclear matter in the crust of neutron stars
- Nuclear Waffles
- Appearance of the Single Gyroid Network Phase in Nuclear Pasta Matter
- Nuclear matter in the crust of neutron stars derived from realistic NN interactions
- A simple analytic model for astrophysical S-factors
- The Shear Viscosity and Thermal Conductivity of Nuclear Pasta
- Gyroid Phase in Nuclear Pasta
- Nuclear Pasta Matter for Different Proton Fractions
- Transport properties of nuclear pasta phase with quantum molecular dynamics
- Curvature effect on nuclear pasta: Is it helpful for gyroid appearance?
- Nuclear pasta in hot and dense matter and its influence on the equation of state for astrophysical simulations
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