Dispersion Measures of Fast Radio Bursts through the Epoch of Reionization

Fuente: arXiv
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Autori principali: Ziegler, Joshua J., Shapiro, Paul R., Dawoodbhoy, Taha, Beniamini, Paz, Kumar, Pawan, Freese, Katherine, Ocvirk, Pierre, Aubert, Dominique, Lewis, Joseph S. W., Teyssier, Romain, Park, Hyunbae, Ahn, Kyungjin, Sorce, Jenny G., Iliev, Ilian T., Yepes, Gustavo, Gottlober, Stefan
Natura: Preprint
Pubblicazione: 2024
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author Ziegler, Joshua J.
Shapiro, Paul R.
Dawoodbhoy, Taha
Beniamini, Paz
Kumar, Pawan
Freese, Katherine
Ocvirk, Pierre
Aubert, Dominique
Lewis, Joseph S. W.
Teyssier, Romain
Park, Hyunbae
Ahn, Kyungjin
Sorce, Jenny G.
Iliev, Ilian T.
Yepes, Gustavo
Gottlober, Stefan
author_facet Ziegler, Joshua J.
Shapiro, Paul R.
Dawoodbhoy, Taha
Beniamini, Paz
Kumar, Pawan
Freese, Katherine
Ocvirk, Pierre
Aubert, Dominique
Lewis, Joseph S. W.
Teyssier, Romain
Park, Hyunbae
Ahn, Kyungjin
Sorce, Jenny G.
Iliev, Ilian T.
Yepes, Gustavo
Gottlober, Stefan
contents Dispersion measures (DM) of fast radio bursts (FRBs) probe the density of electrons in the intergalactic medium (IGM) along their lines-of-sight, including the average density versus distance to the source and its variations in direction. While previous study focused on low-redshift, FRBs are potentially detectable out to high redshift, where their DMs can, in principle, probe the epoch of reionization (EOR) and its patchiness. We present the first predictions from large-scale, radiation-hydrodynamical simulation of fully-coupled galaxy formation and reionization, using Cosmic Dawn (``CoDa")~II to model the density and ionization fields of the universe down to redshifts through the end of the EOR at $z_{re}\approx6.1$. Combining this with an N-body simulation CoDa~II--Dark Matter of the fully-ionized epoch from the EOR to the present, we calculate the mean and standard deviation of FRB DMs as functions of their source redshift. The mean and standard deviation of DM increase with redshift, reaching a plateau by $z(x_{HII}\lesssim0.25)\gtrsim8$, i.e. well above $z_{re}$. The mean-DM asymptote $\mathcal{DM}_{max} \approx 5900~\mathrm{pc\, cm^{-3}}$ reflects the end of the EOR and its duration. The standard deviation there is $σ_{DM, max}\approx497 ~\mathrm{pc\, cm^{-3}}$, reflecting inhomogeneities of both patchy reionization and density. Inhomogeneities in ionization during the EOR contribute $\mathcal{O}(1$ per cent) of this value of $σ_{DM,max}$ from FRBs at redshifts $z\gtrsim 8$. Current estimates of FRB rates suggest this may be detectable within a few years of observation.
format Preprint
id arxiv_https___arxiv_org_abs_2411_02699
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dispersion Measures of Fast Radio Bursts through the Epoch of Reionization
Ziegler, Joshua J.
Shapiro, Paul R.
Dawoodbhoy, Taha
Beniamini, Paz
Kumar, Pawan
Freese, Katherine
Ocvirk, Pierre
Aubert, Dominique
Lewis, Joseph S. W.
Teyssier, Romain
Park, Hyunbae
Ahn, Kyungjin
Sorce, Jenny G.
Iliev, Ilian T.
Yepes, Gustavo
Gottlober, Stefan
Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
Dispersion measures (DM) of fast radio bursts (FRBs) probe the density of electrons in the intergalactic medium (IGM) along their lines-of-sight, including the average density versus distance to the source and its variations in direction. While previous study focused on low-redshift, FRBs are potentially detectable out to high redshift, where their DMs can, in principle, probe the epoch of reionization (EOR) and its patchiness. We present the first predictions from large-scale, radiation-hydrodynamical simulation of fully-coupled galaxy formation and reionization, using Cosmic Dawn (``CoDa")~II to model the density and ionization fields of the universe down to redshifts through the end of the EOR at $z_{re}\approx6.1$. Combining this with an N-body simulation CoDa~II--Dark Matter of the fully-ionized epoch from the EOR to the present, we calculate the mean and standard deviation of FRB DMs as functions of their source redshift. The mean and standard deviation of DM increase with redshift, reaching a plateau by $z(x_{HII}\lesssim0.25)\gtrsim8$, i.e. well above $z_{re}$. The mean-DM asymptote $\mathcal{DM}_{max} \approx 5900~\mathrm{pc\, cm^{-3}}$ reflects the end of the EOR and its duration. The standard deviation there is $σ_{DM, max}\approx497 ~\mathrm{pc\, cm^{-3}}$, reflecting inhomogeneities of both patchy reionization and density. Inhomogeneities in ionization during the EOR contribute $\mathcal{O}(1$ per cent) of this value of $σ_{DM,max}$ from FRBs at redshifts $z\gtrsim 8$. Current estimates of FRB rates suggest this may be detectable within a few years of observation.
title Dispersion Measures of Fast Radio Bursts through the Epoch of Reionization
topic Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2411.02699