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    <dc:date>2013-05-23T18:24:51Z</dc:date>
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  <item rdf:about="http://hdl.handle.net/2307/225">
    <title>Primordial non-Gaussianities in the intergalactic medium</title>
    <link>http://hdl.handle.net/2307/225</link>
    <description>&lt;Title&gt;Primordial non-Gaussianities in the intergalactic medium&lt;/Title&gt;
&lt;Authors&gt;Viel, Matteo; Branchini, Enzo; Dolag, Klaus; Grossi, Margherita; Matarrese, Sabino; Moscardini, Lauro&lt;/Authors&gt;
&lt;Issue Date&gt;2009&lt;/Issue Date&gt;
&lt;Is part of&gt;Monthly notices of the Royal Astronomical Society&lt;/Is part of&gt;
&lt;Volume&gt;393&lt;/Volume&gt;
&lt;Pages&gt;774-782&lt;/Pages&gt;
&lt;Abstract&gt;We present results from the first high-resolution hydrodynamical simulations of non-Gaussian cosmological models. We focus on the statistical properties of the transmitted Lyman-alpha flux in the high-redshift intergalactic medium. Imprints of non-Gaussianity are present and are larger at high redshifts. Differences larger than 20 per cent at z &gt; 3 in the flux probability distribution function for high-transmissivity regions (voids) are expected for values of the non-linearity parameter f(NL) = +/- 100 when compared to a standard Lambda cold dark matter cosmology with f(NL) = 0. We also investigate the one-dimensional flux bispectrum: at the largest scales(corresponding to tens of Mpc), we expect deviations in the flux bispectrum up to 20 per cent at z similar to 4 (for f(NL) = +/- 100),significantly larger than deviations of similar to 3 per cent in the flux power spectrum. We briefly discuss possible systematic errors that can contaminate the signal. Although challenging, a detection of non-Gaussianities in the interesting regime of scales and redshifts probed by the Lyman-alpha forest could be possible with future data sets.&lt;/Abstract&gt;</description>
    <dc:date>2008-12-31T23:00:00Z</dc:date>
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