Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Probing Galactic Halos with Fast Radio Bursts

Type de record:

paperdatasetsoftware
Créateur:
ProZhe
Hôte:avatar
The precise localization (<1'') of multiple fast radio bursts (FRBs) to z>0.1 galaxies has confirmed that the dispersion measures (DMs) of these enigmatic sources afford a new opportunity to probe the diffuse ionized gas around and in between galaxies. In this manuscript, we examine the signatures of gas in dark matter halos (aka halo gas) on DM observations in current and forthcoming FRB surveys. Combining constraints from observations of the high velocity clouds, OVII absorption, and the DM to the Large Magellanic Cloud with hydrostatic models of halo gas, we estimate that our Galactic halo will contribute ${\rm DM}_{\rm MW,halo} \approx 50-80 \rm pc/cm^{-3}$ from the Sun to 200 kpc independent of any contribution from the Galactic ISM. Extending analysis to the Local Group, we demonstrate that M31's halo will be easily detected by high-sample FRB surveys (e.g. CHIME) although signatures from a putative Local Group medium may compete. We then review current empirical constraints on halo gas in distant galaxies and discuss the implications for their DM contributions. We further examine the DM probability distribution function of a population of FRBs at z >> 0 using an updated halo mass function and new models for the halo density profile. Lastly, we illustrate the potential of FRB experiments for resolving the baryonic fraction of halos by analyzing simulated sightlines through the CASBaH survey. All of the code and data products of our analysis are available at github.com. 20 pages, 20 figures, accepted to MNRAS; see github.com for related code

Visit

arxiv.org

Tags

Astrophysics of Galaxies

Similaires

First discoveries and localizations of Fast Radio Bursts with MeerTRAP: real-time, commensal MeerKAT surveyDetection of fast transients with radio interferometric arraysProbing Radio Intensity at high-Z from Marion: 2017 InstrumentFast Radio Burst Science with the MeerKAT Telescope Leading into the SKA EraA subarcsec localized fast radio burst with a significant host galaxy dispersion measure contributionA sub-arcsec localised fast radio burst with a significant host galaxy dispersion measure contribution

First discoveries and localizations of Fast Radio Bursts with MeerTRAP: real-time, commensal MeerKAT survey

International audience We report on the discovery and localization of fast radio burs

Detection of fast transients with radio interferometric arrays

Next-generation radio arrays, including the Square Kilometre Array (SKA) and its pathfinders, will o

Probing Radio Intensity at high-Z from Marion: 2017 Instrument

We introduce Probing Radio Intensity at high-Z from Marion (PRIZM), a new experiment designed to mea

Fast Radio Burst Science with the MeerKAT Telescope Leading into the SKA Era

Fast radio bursts (FRBs) are mysterious (sub-)millisecond bursts of radio emission originat

A subarcsec localized fast radio burst with a significant host galaxy dispersion measure contribution

ABSTRACT We present the discovery of FRB 20210410D with the MeerKAT radio interfero

A sub-arcsec localised fast radio burst with a significant host galaxy dispersion measure contribution

We present the discovery of FRB 20210410D, with the MeerKAT radio interferometer in South Africa, as