The Dispersion Measure Contributions of the Cosmic Web
arXiv:2309.08268 · doi:10.1051/0004-6361/202347139
Abstract
The large-scale distribution of baryons is sensitive to gravitational collapse, mergers, and galactic feedback. Known as the Cosmic Web, its large-scale structure (LSS) can be classified as halos, filaments, and voids. Fast Radio Bursts (FRBs) are extragalactic sources that undergo dispersion along their propagation paths. They provide insight into ionised matter along their sightlines via their dispersion measures (DMs), and have been investigated as probes of the LSS baryon fraction, the diffuse baryon distribution, and of cosmological parameters. We use the cosmological simulation IllustrisTNG to study FRB DMs accumulated while traversing different types of LSS. We combine methods for deriving electron density, classifying LSS, and tracing FRB sightlines. We identify halos, filaments, voids, and collapsed structures along random sightlines and calculate their DM contributions. We analyse the redshift-evolving cosmological DM components of the Cosmic Web. We find that the filamentary contribution dominates, increasing from ~71% to ~80% on average for FRBs originating at z=0.1 vs z=5, while the halo contribution falls, and the void contribution remains consistent to within ~1%. The majority of DM variance originates from halos and filaments, potentially making void-only sightlines more precise probes of cosmological parameters. We find that, on average, an FRB originating at z=1 will intersect ~1.8 foreground collapsed structures, increasing to ~12.4 structures for a z=5 FRB. The impact parameters between our sightlines and TNG structures of any mass appear consistent with those reported for likely galaxy-intersecting FRBs. However, we measure lower average accumulated DMs from these structures than the DM excesses reported for these literature FRBs, indicating some DM may arise beyond the structures themselves.
19 pages, 10 figures, accepted for publication by Astronomy & Astrophysics on 14/09/2023
References in corpus (24)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- A bright millisecond radio burst of extragalactic origin
- A census of baryons in the Universe from localized fast radio bursts
- Fast Radio Burst Discovered in the Arecibo Pulsar ALFA Survey
- The Search for the Missing Baryons at Low Redshift
- The Laniakea supercluster of galaxies
- A repeating fast radio burst associated with a persistent radio source
- ELUCID - Exploring the Local Universe with reConstructed Initial Density field III: Constrained Simulation in the SDSS Volume
- Fast Radio Bursts and cosmological tests
- Reconstructing the cosmic density field with the distribution of dark matter halos
- Intergalactic medium dispersion measures of fast radio bursts estimated from IllustrisTNG simulation and their cosmological applications
- First detection of stacked X-ray emission from cosmic web filaments
- Properties of HI discs in the Auriga cosmological simulations
- An FRB Sent Me a DM: Constraining the Electron Column of the Milky Way Halo with Fast Radio Burst Dispersion Measures from CHIME/FRB
- Extracting host galaxy dispersion measure and constraining cosmological parameters using fast radio burst data
- Constraining the Cosmic Baryon Distribution with Fast Radio Burst Foreground Mapping
- The role of the cosmic web in the scatter of the galaxy stellar mass - gas metallicity relation
- The dispersion measure and scattering of FRBs: Contributions from the intergalactic medium, foreground halos, and hosts
- Effects of Baryonic Feedback on the Cosmic Web
- Fruitbat: A Python Package for Estimating Redshifts of Fast Radio Bursts
- The Origin of Stars in the Inner 500 Parsecs in TNG50 Galaxies
- Studying the Warm Hot Intergalactic Medium in emission: a reprise
- Constraining the ionized gas evolution with CMB-spectroscopic survey cross-correlation
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- Probing the Circum-Galactic Medium with Fast Radio Bursts: Insights from the CAMELS Simulations
- The dispersion measure and rotation measure from fast radio burst host galaxies based on the IllustrisTNG50 simulation
- FRB Line-of-sight Ionization Measurement From Lightcone AAOmega Mapping Survey: the First Data Release
- Modeling the Cosmic Dispersion Measure in the D < 120 Mpc Local Universe
- Exploring selection biases in FRB dispersion-galaxy cross-correlations with magnetohydrodynamical simulations
- Dispersion Measures of Fast Radio Bursts through the Epoch of Reionization