English

Surface and curvature properties of charged strangelets in compact objects

Nuclear Theory 2021-04-13 v2 High Energy Astrophysical Phenomena High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Droplets of absolutely stable strange quark matter (strangelets) immersed in a lepton background may be the energetically preferred composition of strange star crusts and of the interior of a new class of stars known as strangelet dwarfs. In this work we calculate the surface tension σ\sigma and the curvature coefficient γ\gamma of charged strangelets as a function of the baryon number density, the temperature, the chemical potential of trapped neutrinos, the strangelet size, the electric potential and the electric charge at their boundary. Strange quark matter in chemical equilibrium and with global electric charge neutrality is described within the MIT bag model. We focus on three different astrophysical scenarios, namely cold strange stars, proto strange stars and post merger strange stars. Finite size effects are implemented within the multiple reflection expansion framework. We find that σ\sigma decreases significantly as the strangelet's boundary becomes more positively charged. This occurs because σ\sigma is dominated by the contribution of ss quarks which are the most massive particles in the system. Negatively charged ss-quarks are suppressed in strangelets with a large positive electric charge, diminishing their contribution to σ\sigma and resulting in smaller values of the total σ\sigma. We verify that the more extreme astrophysical scenarios, with higher temperatures and higher neutrino chemical potentials, allow higher positive values of the strangelet's electric charge at the boundary and consequently smaller values of σ\sigma. In contrast, γ\gamma is strongly dominated by the density of light (uu and dd) quarks and is quite independent of the charge-per-baryon ratio, the temperature and neutrino trapping. We discuss the relative importance of surface and curvature effects as well as some astrophysical consequences of these results.

Keywords

Cite

@article{arxiv.2010.06098,
  title  = {Surface and curvature properties of charged strangelets in compact objects},
  author = {G. Lugones and A. G. Grunfeld},
  journal= {arXiv preprint arXiv:2010.06098},
  year   = {2021}
}

Comments

9 pages, 6 figures