Published July 1, 2014 | Version v1
Journal article

DARK MATTER HEATING AND EARLY CORE FORMATION IN DWARF GALAXIES

  • 1. Department of Astronomy and Astrophysics, University of California, 1156 High Street, Santa Cruz, CA 95064 (United States)
  • 2. Astronomy Department, University of Washington, Seattle, WA 98195 (United States)

Description

We present more results from a fully cosmological ΛCDM simulation of a group of isolated dwarf galaxies that has been shown to reproduce the observed stellar mass and cold gas content, resolved star formation histories, and metallicities of dwarfs in the Local Volume. Here we investigate the energetics and timetable of the cusp-core transformation. As suggested by previous work, supernova-driven gas outflows remove dark matter (DM) cusps and create kiloparsec-size cores in all systems having a stellar mass M * > 106 M . The DM core mass removal efficiencydark mass ejected per unit stellar mass—ranges today from a few to a dozen, and increases with decreasing host mass. Because dwarfs form the bulk of their stars prior to redshift 1 and the amount of work required for DM heating and core formation scales approximately as Mvir5/3, the unbinding of the DM cusp starts early and the formation of cored profiles is not as energetically onerous as previously claimed. DM particles in the cusp typically migrate to 2-3 core radii after absorbing a few percent of the energy released by supernovae. The present-day slopes of the inner DM mass profiles, Γ ≡ dlog M/dlog R ≅ 2.5-3, of the simulated ''Bashful'' and ''Doc'' dwarfs are similar to those measured in the luminous Fornax and Sculptor dwarf spheroidals. None of the simulated galaxies has a circular velocity profile exceeding 20 km s–1 in the inner 1 kpc, implying that supernova feedback is key to solve the ''too-big-to-fail'' problem for Milky Way subhalos

Availability note (English)

Available from http://dx.doi.org/10.1088/2041-8205/789/1/L17

Additional details

Identifiers

Publishing Information

Journal Title
Astrophysical Journal Letters
Journal Volume
789
Journal Issue
1
Journal Page Range
[6 p.]
ISSN
2041-8205

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
46071080
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Descriptors DEI
APPROXIMATIONS; COMPUTERIZED SIMULATION; COSMOLOGICAL CONSTANT; COSMOLOGY; MASS; METALLICITY; MILKY WAY; NONLUMINOUS MATTER; RED SHIFT; SUPERNOVAE; TRANSFORMATIONS; VELOCITY
Descriptors DEC
BINARY STARS; CALCULATION METHODS; ERUPTIVE VARIABLE STARS; GALAXIES; MATTER; SIMULATION; STARS; VARIABLE STARS