The Lyman-alpha forest at redshifts 0.1 -- 1.6: good agreement between a large hydrodynamic simulation and HST spectra
arXiv:0802.3730 · doi:10.1111/j.1365-2966.2009.15140.x
Abstract
We give a comprehensive statistical description of the Lyman-alpha absorption from the intergalactic medium in a hydrodynamic simulation at redshifts 0.1-1.6, the range of redshifts covered by HST spectra of QSOs. We use the ENZO code to make a 76 comoving Mpc cube simulation using 75 kpc cells, for a Hubble constant of 71 km/s/Mpc. The best prior work, by \citet{dave99},used an SPH simulation in a 15.6 Mpc box with an effective resolution of 245 kpc and slightly different cosmological parameters. At redshifts z=2 this simulation is different from data. \citet{tytler07b} found that the simulated spectra at z=2 have too little power on large scales, Lyman-alpha lines are too wide, there is a lack high column density lines, and there is a lack of pixels with low flux. Here we present statistics at z<1.6, including the flux distribution, the mean flux, the effective opacity, and the power and correlation of the flux. We also give statistics of the lyman alpha lines including the line width distribution, the column density distribution, the number of lines per unit equivalent width and redshift, and the correlation between the line width and column density. We find that the mean amount of absorption in the simulated spectra changes smoothly with redshift with DA(z)=0.01(1+z)^{2.25}. Both the trend and absolute values are close to measurements of HST spectra by \citet{kirkman07a}. The column density and line width distributions are also close to those measured from HST spectra by \citet{janknecht06a}, except for the mode of the line width distribution which is smaller in the HST spectra. Although some differences that we saw at z=2 are too subtle to be seen in existing HST spectra, overall, the simulation gives an good description of HST spectra at 0.1<z<1.6.
References in corpus (14)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Where Are the Baryons? II: Feedback Effects
- Possible evidence for an inverted temperature-density relation in the intergalactic medium from the flux distribution of the Lyman-alpha forest
- An improved measurement of the flux distribution of the Ly-alpha forest in QSO absorption spectra: the effect of continuum fitting, metal contamination and noise properties
- Where Are the Baryons? III: Non-Equilibrium Effects and Observables
- The Evolution of Lyman alpha Absorbers in the Redshift Range 0.5<z<1.9
- Continuous statistics of the Lyman-alpha forest at 0 < z < 1.6: the mean flux, flux distribution, and autocorrelation from HST FOS spectra
- Numerical Simulations of the Lyman-alpha forest - A comparison of Gadget-2 and Enzo
- Effects of the size of cosmological N-Body simulations on physical quantities -- I: Mass Function
- Lyman Limit Systems in Cosmological Simulations
- Metal Absorption Systems in Spectra of Pairs of QSOs
- The Effect of Large-Scale Power on Simulated Spectra of the Lya forest
- A Catalog of Absorption Lines in Eight HST/STIS E230M 1.0 < z < 1.7 Quasar Spectra
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- The intergalactic medium over the last 10 billion years I: Lyman alpha absorption and physical conditions
- The Nature and Origin of Low-Redshift O VI Absorbers
- Intergalactic Lyman continuum photon budget in the past 5 billion years
- On the connection between the intergalactic medium and galaxies: The HI-galaxy cross-correlation at z < 1
- How well do cosmological simulations reproduce individual-halo properties?
- The effect of stellar and AGN feedback on the low redshift Lyman- forest in the Sherwood simulation suite
- Warm Gas in and Around Simulated Galaxy Clusters as Probed by Absorption Lines
- The evolution of the low-density HI intergalactic medium from z=3.6 to 0: Data, transmitted flux and HI column density
- The Low-Redshift Lyman Alpha Forest toward 3C 273