Shedding light on low-mass subhalo survival and annihilation luminosity with numerical simulations
arXiv:2207.08652 · doi:10.1093/mnras/stac2921
Abstract
In this work, we carry out a suite of specially-designed numerical simulations to shed further light on dark matter (DM) subhalo survival at mass scales relevant for gamma-ray DM searches, a topic subject to intense debate nowadays. Specifically, we have developed and employed an improved version of DASH, a GPU -body code, to study the evolution of low-mass subhaloes inside a Milky Way-like halo with unprecedented accuracy, reaching solar-mass and sub-parsec resolution in our simulations. We simulate subhaloes with varying mass, concentration, and orbital properties, and consider the effect of the gravitational potential of the Milky Way galaxy itself. More specifically, we analyze the evolution of both the bound mass fraction and annihilation luminosity of subhaloes, finding that most subhaloes survive until present time, even though in some cases they lose more than 99% of their mass at accretion. Baryons in the host induce a much more severe mass loss, especially when the subhalo orbit is more parallel to the galactic disk. Many of these subhaloes cross the solar galactocentric radius, thus making it easier to detect their annihilation fluxes from Earth. We find subhaloes orbiting a DM-only halo with a pericentre in the solar vicinity to lose 70-90% of their initial annihilation luminosity at redshift zero, which increases up to 99% when baryons are also included in the host. We find a strong relation between subhalo's mass loss and the effective tidal field at pericentre. Indeed, much of the dependence on concentration, orbital parameters, host potential and baryonic components can be explained through this single parameter. In addition to shedding light on the survival of low-mass galactic subhaloes, our results can provide detailed predictions that will aid current and future quests for the nature of DM.
19 pages, 16 figures. Submitted to MNRAS, comments welcome!
References in corpus (24)
- The NumPy array: a structure for efficient numerical computation
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Massloss of galaxies due to a UV-background
- PAMELA - A Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics
- Dark matter and cosmic structure
- Disruption of Dark Matter Substructure: Fact or Fiction?
- Dark Matter Substructure in Numerical Simulations: A Tale of Discreteness Noise, Runaway Instabilities, and Artificial Disruption
- Review of LHC Dark Matter Searches
- Dark Matter: A Primer
- Large-scale dark matter simulations
- Orbital parameters of infalling satellite haloes in the hierarchical CDM model
- Determining the full satellite population of a Milky Way-mass halo in a highly resolved cosmological hydrodynamic simulation
- Discreteness Effects in Lambda Cold Dark Matter Simulations: A Wavelet-Statistical View
- The tidal evolution of dark matter substructure -- I. Subhalo density profiles
- Modeling dark matter subhalos in a constrained galaxy: Global mass and boosted annihilation profiles
- DASH: a library of dynamical subhalo evolution
- Unidentified Gamma-ray Sources as Targets for Indirect Dark Matter Detection with the Fermi-Large Area Telescope
- Spectral and spatial analysis of the dark matter subhalo candidates among Fermi Large Area Telescope unidentified sources
- SatGen -- II. Assessing the impact of a disc potential on subhalo populations
- Baryonic effects on the detectability of annihilation radiation from dark matter subhaloes around the Milky Way
- Evolution of subhalo orbits in a smoothly-growing host halo potential
- Sensitivity of the Cherenkov Telescope Array to dark subhalos
- Spatial extension of dark subhalos as seen by Fermi-LAT and implications for WIMP constraints
Cited by in corpus (12)
- Tidal Stripping in the Adiabatic Limit
- Constraining the dark matter contribution of rays in Cluster of galaxies using Fermi-LAT data
- Prompt cusps and the dark matter annihilation signal
- Tidal evolution of cored and cuspy dark matter halos
- The effect of stellar encounters on the dark matter annihilation signal from prompt cusps
- Limits on dark matter annihilation in prompt cusps from the isotropic gamma-ray background
- Prospects for -ray observations of the Perseus galaxy cluster with the Cherenkov Telescope Array
- Search for Dark Matter Annihilation to gamma-rays from SPT-SZ selected Galaxy Clusters
- Searching for dark matter subhalos in the Fermi-LAT catalog with Bayesian neural networks
- The viability of low-mass subhaloes as targets for gamma-ray dark matter searches
- New insights on low-mass dark matter subhalo tidal tracks via numerical simulations
- Impact of baryons on the population of Galactic subhalos and implications for dark matter searches