PaperPanorama

Nuclear Theory·nucl-th

Wednesday·July 8, 2020

6 papers4 primary·2 cross-listed

  1. 05

    On self-gravitating strange dark matter halos around galaxies

    Marco Merafina🇮🇹 · Francesco G. Saturni🇮🇹 · Catalina Curceanu🇮🇹 · Raffaele Del Grande🇮🇹 · Kristian Piscicchia🇮🇹

    A new family of nonrelativistic, Newtonian, non-quantum equilibrium configurations describing galactic halos is introduced, by considering strange quark matter conglomerates with masses larger than about 8 GeV as new possible components of the dark matter. Originally introduced to explain the state of matter in neutron stars, such conglomerates may also form in the high-density and temperature conditions of the primordial Universe and then decouple from ordinary baryonic matter, providing the fundamental components of dark matter for the formation of pristine gravitational potential wells and the subsequent evolution of cosmic structures. The obtained results for halo mass and radius are consistent with the rotational velocity curve observed in the Galaxy. Additionally, the average density of such dark matter halos is similar to that derived for halos of dwarf spheroidal galaxies, which can therefore be interpreted as downscaled versions of larger dark matter distributions around Milky Way-sized galaxies and hint for a common origin of the two families of cosmic structures.

    astro-ph.GAnucl-thPRD(2020)·25 citations
  2. 06

    Density of States of a Coupled-Channel System

    Pok Man Lo🇵🇱

    We demonstrate how an effective density of states can be derived from the S-matrix describing a coupled-channel system. Besides the locations of poles, the phase of the determinant of the S-matrix encodes essential details in characterizing the dynamics of resonant and non-resonant interactions. The density of states is computed for the two channel scattering problem (, S-wave), and the influences from the various dynamical structures: poles, roots, branch cuts, and Riemann sheets, are examined.

    hep-phnucl-thPRD(2020)·16 citations

Affiliations

first authorsco-authorsvia INSPIRE