Log-Poisson Non-Gaussianity of Ly$\alpha$ Transmitted Flux Fluctuations at High Redshift
Yi Lu, Weishan Zhu, Yaoquan Chu, Long-long Feng, Li-Zhi Fang

TL;DR
This study analyzes the non-Gaussian features of high-redshift intergalactic medium using Lyα flux, revealing log-Poisson hierarchy characteristics consistent across redshifts and scales, indicating turbulence-like evolution.
Contribution
It demonstrates that Lyα transmitted flux fluctuations follow a log-Poisson hierarchy with parameters independent of redshift, supported by hydrodynamical simulations and observational data.
Findings
Non-Gaussianity well reconstructed by simulations
Intermittency parameter nearly constant across redshifts
High-redshift data consistent with turbulence-like evolution
Abstract
We investigate the non-Gaussian features of the IGM at redshift using Ly transmitted flux of quasar absorption spectra and cosmological hydrodynamic simulation of the concordance CDM universe. We show that the neutral hydrogen mass density field and Ly transmitted flux fluctuations possess all the non-Gaussian features predicted by the log-Poisson hierarchy, which depends only on two dimensionless parameters and , describing, respectively, the intermittence and singularity of the random fields. We find that the non-Gaussianity of the Ly transmitted flux of quasars from to can be well reconstructed by the hydrodynamical simulation samples. Although the Gunn-Peterson optical depth and its variance underwent a significant evolution in the redshift range of , the intermittency measured by is almost…
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