An FRB Sent Me a DM: Constraining the Electron Column of the Milky Way Halo with Fast Radio Burst Dispersion Measures from CHIME/FRB
arXiv:2301.03502 · doi:10.3847/1538-4357/acbbd0
Abstract
The CHIME/FRB project has detected hundreds of fast radio bursts (FRBs), providing an unparalleled population to probe statistically the foreground media that they illuminate. One such foreground medium is the ionized halo of the Milky Way (MW). We estimate the total Galactic electron column density from FRB dispersion measures (DMs) as a function of Galactic latitude using four different estimators, including ones that assume spherical symmetry of the ionized MW halo and ones that imply more latitudinal-variation in density. Our observation-based constraints of the total Galactic DM contribution for , depending on the Galactic latitude and selected model, span 87.8 - 141 pc cm^-3. This constraint implies upper limits on the MW halo DM contribution that range over 52-111 pc cm^-3. We discuss the viability of various gas density profiles for the MW halo that have been used to estimate the halo's contribution to DMs of extragalactic sources. Several models overestimate the DM contribution, especially when assuming higher halo gas masses (~ 3.5 x 10^12 solar masses). Some halo models predict a higher MW halo DM contribution than can be supported by our observations unless the effect of feedback is increased within them, highlighting the impact of feedback processes in galaxy formation.
19 pages, 4 figures. ApJ in press (accepted February 8th, 2023)
References in corpus (34)
- A bright millisecond radio burst of extragalactic origin
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- galpy: A Python Library for Galactic Dynamics
- A New Electron Density Model for Estimation of Pulsar and FRB Distances
- A fast radio burst associated with a Galactic magnetar
- A bright millisecond-duration radio burst from a Galactic magnetar
- The Host Galaxy and Redshift of the Repeating Fast Radio Burst FRB 121102
- A distance to the Large Magellanic Cloud that is precise to one per cent
- A census of baryons in the Universe from localized fast radio bursts
- The First CHIME/FRB Fast Radio Burst Catalog
- The Vertical Structure of Warm Ionised Gas in the Milky Way
- A repeating fast radio burst associated with a persistent radio source
- A bimodal burst energy distribution of a repeating fast radio burst source
- Host Galaxy Properties and Offset Distributions of Fast Radio Bursts: Implications for their Progenitors
- A nearby repeating fast radio burst in the direction of M81
- Probing Galactic Halos with Fast Radio Bursts
- A distance determination to the Small Magellanic Cloud with an accuracy of better than 2 percent based on late-type eclipsing binary stars
- X-Ray Absorption from the Milky Way Halo and the Local Group
- The z-DM distribution of fast radio bursts
- Discovery of 14 radio pulsars in a survey of the Magellanic Clouds
- A sudden period of high activity from repeating Fast Radio Burst 20201124A
- A comparison of Galactic electron density models using PyGEDM
- The distribution of gas in the Local Group from constrained cosmological simulations: the case for Andromeda and the Milky Way galaxies
- XMM-Newton Survey of Local O VII Absorption Lines in the Spectra of Active Galactic Nuclei
- Electron Density Structure of the Local Galactic Disk
- First results from the Arecibo Galactic HI Survey: the disk/halo interface region in the outer Galaxy
- The Large Dispersion and Scattering of FRB 20190520B are Dominated by the Host Galaxy
- A disk-dominated and clumpy circumgalactic medium of the Milky Way seen in X-ray emission
- Redshift Estimation and Constraints on Intergalactic and Interstellar Media from Dispersion and Scattering of Fast Radio Bursts
- Modeling Fast Radio Burst Dispersion and Scattering Properties in the First CHIME/FRB Catalog
- Circumgalactic Oxygen Absorption and Feedback
- First discovery of new pulsars and RRATs with CHIME/FRB
- A Data-Driven Technique Using Millisecond Transients to Measure the Milky Way Halo
- The soft X-ray background with Suzaku: I. Milky Way halo
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- CHIME/FRB Discovery of 25 Repeating Fast Radio Burst Sources
- The FRB20190520B Sightline Intersects Foreground Galaxy Clusters
- Deep Synoptic Array science: Two fast radio burst sources in massive galaxy clusters
- FLIMFLAM DR1: The First Constraints on the Cosmic Baryon Distribution from 8 FRB sightlines
- Probing the Circum-Galactic Medium with Fast Radio Bursts: Insights from the CAMELS Simulations
- A fast radio burst localized at detection to an edge-on galaxy using very-long-baseline interferometry
- Disentangling the Faraday rotation sky
- The Dispersion Measure Contributions of the Cosmic Web
- The Cosmic Evolution of Fast Radio Bursts Inferred from the CHIME/FRB Baseband Catalog 1
- Contemporaneous X-ray Observations of 30 Bright Radio Bursts from the Prolific Fast Radio Burst Source FRB 20220912A
- The dispersion measure and scattering of Fast Radio Bursts: contributions from multi-components, and clues for the intrinsic properties
- NE2025: An Updated Electron Density Model for the Galactic Interstellar Medium
- Bounding the Photon Mass with Ultrawide Bandwidth Pulsar Timing Data and Dedispersed Pulses of Fast Radio Bursts
- Modeling the Cosmic Dispersion Measure in the D < 120 Mpc Local Universe
- Refined Constraints on the Hubble Constant from Localized FRBs with Assessment of Systematic Effects
- Evidence for a hot galactic halo around the Andromeda Galaxy using fast radio bursts along two sightlines
- A Sub-solar Fe/O, logT~7.5 Gas Component Permeating the Milky Way's CGM
- Microphysics of Circumgalactic Turbulence Probed by Fast Radio Bursts and Quasars
- A Spatial Gap in the Sky Distribution of Fast Radio Burst Detections Coinciding with Galactic Plasma Overdensities
- Misty, patchy, and turbulent: constraining the cool circumgalactic medium with mCC
- Constraining the Milky Way's Dispersion Measure Using FRB and X-ray Data
- The BINGO/ABDUS Project: Forecast for cosmological parameters from a mock Fast Radio Bursts survey
- Prospects for studying million-degree gas in the Milky Way halo using the forbidden optical [FeX] and [FeXIV] intersystem lines