Padé Approximants for Fast Radio Bursts Diffuse Dispersion Measure

Fuente: arXiv
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Autores principales: Kalomenopoulos, Marios, Zhuge, Jiaming
Formato: Preprint
Publicado: 2025
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author Kalomenopoulos, Marios
Zhuge, Jiaming
author_facet Kalomenopoulos, Marios
Zhuge, Jiaming
contents Fast Radio Bursts (FRBs) have become an indispensable tool for studying the Universe's ionisation properties, as well as its cosmological parameters. This is achieved by analysing their diffuse dispersion measure (${\rm DM}_{\rm diff}$) as a function of redshift. However, this requires an integration along the line-of-sight, which is time-consuming. In this work, we derive an analytical approximation formula for ${\rm DM}_{\rm diff}$ for flat, $Λ$CDM and $w$CDM universes. We show that our approximation works well for the ranges $0.01 \leq z \leq 2$, $0.2 \leq Ω_m \leq 1.0$ and $-3.0 \leq w \leq -0.5$, with relative fractional error to a numerically evaluated ${\rm DM}_{\rm diff}$ always smaller than $3.5\ \%$, in the worst case scenario, and in most cases smaller than $0.5\ \%$. Moreover, the approximation is more than $15$ ($2$) times faster than the numerical solution of $Λ$CDM ($w$CDM). Therefore, we hope that it could be a useful tool for the FRB community.
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id arxiv_https___arxiv_org_abs_2512_02357
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Padé Approximants for Fast Radio Bursts Diffuse Dispersion Measure
Kalomenopoulos, Marios
Zhuge, Jiaming
High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
Fast Radio Bursts (FRBs) have become an indispensable tool for studying the Universe's ionisation properties, as well as its cosmological parameters. This is achieved by analysing their diffuse dispersion measure (${\rm DM}_{\rm diff}$) as a function of redshift. However, this requires an integration along the line-of-sight, which is time-consuming. In this work, we derive an analytical approximation formula for ${\rm DM}_{\rm diff}$ for flat, $Λ$CDM and $w$CDM universes. We show that our approximation works well for the ranges $0.01 \leq z \leq 2$, $0.2 \leq Ω_m \leq 1.0$ and $-3.0 \leq w \leq -0.5$, with relative fractional error to a numerically evaluated ${\rm DM}_{\rm diff}$ always smaller than $3.5\ \%$, in the worst case scenario, and in most cases smaller than $0.5\ \%$. Moreover, the approximation is more than $15$ ($2$) times faster than the numerical solution of $Λ$CDM ($w$CDM). Therefore, we hope that it could be a useful tool for the FRB community.
title Padé Approximants for Fast Radio Bursts Diffuse Dispersion Measure
topic High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2512.02357