论文标题

五个局部快速无线电爆发的IgM Baryon质量分数的宇宙学不敏感估计值

Cosmology-insensitive estimate of IGM baryon mass fraction from five localized fast radio bursts

论文作者

Li, Zhengxiang, Gao, He, Wei, Jun-Jie, Yang, Yuan-Pei, Zhang, Bing, Zhu, Zong-Hong

论文摘要

五个快速无线电爆发(FRB),包括三个显然不重复的FRB 180924,FRB 181112和FRB 190523,以及两个中继器,FRB 121102和FRB 180916.J0158+65,到目前为止已经进行了本地化。我们将最近开发的一种方法(Li等人,2019)应用于这五个局部FRB,以对宇宙学对IGM中Baryon质量的比例进行不敏感的估计,$ f _ {\ rm igm} $。使用测量的分散度度量(DM)和光度距离$ D _ {\ rm L} $ data(从frb红移推断出和$ d _ {\ rm l} $ ia型超级novae的五个frbs的IA型超新星),我们限制了本地$ f _ frbs的$ f _ { 0.84^{+0.16} _ { - 0.22} $没有红移依赖的证据。从FRB观测值中,$ f _ {\ rm Igm} $的宇宙学不敏感估计值与使用其他探针的先前约束非常吻合。此外,使用三个显然不重复的frb,只有我们有点宽松,但一致的结果$ f _ {\ rm igm} = 0.74^{+0.24} _ { - 0.18} $。在这两种情况下,可以通过将其建模为恒星形成率的函数来实现主机Galaxy DM贡献($ {\ rm dm_ {host}} $)的合理估计。 $ f _ {\ rm igm} $和$ {\ rm dm_ {host}} $的约束都将得到显着改善,并且随着本地化FRB的迅速发展。

Five fast radio bursts (FRBs), including three apparently non-repeating ones FRB 180924, FRB 181112, and FRB 190523, and two repeaters, FRB 121102 and FRB 180916.J0158+65, have already been localized so far. We apply a method developed recently by us (Li et al. 2019) to these five localized FRBs to give a cosmology-insensitive estimate of the fraction of baryon mass in the IGM, $f_{\rm IGM}$. Using the measured dispersion measure (DM) and luminosity distance $d_{\rm L}$ data (inferred from the FRB redshifts and $d_{\rm L}$ of type Ia supernovae at the same redshifts) of the five FRBs, we constrain the local $f_{\rm IGM} = 0.84^{+0.16}_{-0.22}$ with no evidence of redshift dependence. This cosmology-insensitive estimate of $f_{\rm IGM}$ from FRB observations is in excellent agreement with previous constraints using other probes. Moreover, using the three apparently non-repeating FRBs only we get a little looser but consistent result $f_{\rm IGM} = 0.74^{+0.24}_{-0.18}$. In these two cases, reasonable estimations for the host galaxy DM contribution (${\rm DM_{host}}$) can be achieved by modelling it as a function of star formation rate. The constraints on both $f_{\rm IGM}$ and ${\rm DM_{host}}$ are expected to be significantly improved with the rapid progress in localizing FRBs.

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