Galaxy dispersion measured by Fast Radio Bursts as a probe of baryonic feedback models

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Hauptverfasser: Theis, Alexander, Hagstotz, Steffen, Reischke, Robert, Weller, Jochen
Format: Preprint
Veröffentlicht: 2024
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author Theis, Alexander
Hagstotz, Steffen
Reischke, Robert
Weller, Jochen
author_facet Theis, Alexander
Hagstotz, Steffen
Reischke, Robert
Weller, Jochen
contents Fast Radio Bursts (FRBs) are a sensitive probe of the electron distribution in both the large-scale structure and their host galaxies through the dispersion measure (DM) of the radio pulse. Baryonic feedback models are crucial for modelling small scales for ongoing cosmological surveys that are expected to change the electron distribution in galaxies in a way that can be probed by FRB observations. In this paper, we explore the impact of baryonic feedback on FRB hosts using numerical simulations and make a detailed study of the host galaxy dispersion as a function of redshift, galaxy type, feedback model and how these properties vary in independent simulation codes. We find that the host galaxy dispersion varies dramatically between different implementations of baryonic feedback, allowing FRBs with host identification to be a valuable probe of feedback physics and thus provide necessary priors for upcoming analysis of the statistical properties of the large-scale structure. We further find that any dependency on the exact location of events within the halo is small. While there exists an evolution of the dispersion measure with redshift and halo mass, it is largely driven by varying star formation rates of the halo. Spectral information from FRB hosts can therefore be used to put priors on the host galaxy dispersion measure, and FRBs can be used to distinguish between competing models of baryonic feedback in future studies.
format Preprint
id arxiv_https___arxiv_org_abs_2403_08611
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Galaxy dispersion measured by Fast Radio Bursts as a probe of baryonic feedback models
Theis, Alexander
Hagstotz, Steffen
Reischke, Robert
Weller, Jochen
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
Fast Radio Bursts (FRBs) are a sensitive probe of the electron distribution in both the large-scale structure and their host galaxies through the dispersion measure (DM) of the radio pulse. Baryonic feedback models are crucial for modelling small scales for ongoing cosmological surveys that are expected to change the electron distribution in galaxies in a way that can be probed by FRB observations. In this paper, we explore the impact of baryonic feedback on FRB hosts using numerical simulations and make a detailed study of the host galaxy dispersion as a function of redshift, galaxy type, feedback model and how these properties vary in independent simulation codes. We find that the host galaxy dispersion varies dramatically between different implementations of baryonic feedback, allowing FRBs with host identification to be a valuable probe of feedback physics and thus provide necessary priors for upcoming analysis of the statistical properties of the large-scale structure. We further find that any dependency on the exact location of events within the halo is small. While there exists an evolution of the dispersion measure with redshift and halo mass, it is largely driven by varying star formation rates of the halo. Spectral information from FRB hosts can therefore be used to put priors on the host galaxy dispersion measure, and FRBs can be used to distinguish between competing models of baryonic feedback in future studies.
title Galaxy dispersion measured by Fast Radio Bursts as a probe of baryonic feedback models
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2403.08611