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A Scale-Dependent Power Asymmetry from Isocurvature Perturbations

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arxiv 0907.0705 v1 pith:TAAM7YOM submitted 2009-07-04 astro-ph.CO

classification astro-ph.CO
keywords asymmetrypowercurvatonmodelscalesamplitudeisocurvatureperturbations
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If the hemispherical power asymmetry observed in the cosmic microwave background (CMB) on large angular scales is attributable to a superhorizon curvaton fluctuation, then the simplest model predicts that the primordial density fluctuations should be similarly asymmetric on all smaller scales. The distribution of high-redshift quasars was recently used to constrain the power asymmetry on scales k ~ 1.5h/Mpc, and the upper bound on the amplitude of the asymmetry was found to be a factor of six smaller than the amplitude of the asymmetry in the CMB. We show that it is not possible to generate an asymmetry with this scale dependence by changing the relative contributions of the inflaton and curvaton to the adiabatic power spectrum. Instead, we consider curvaton scenarios in which the curvaton decays after dark matter freezes out, thus generating isocurvature perturbations. If there is a superhorizon fluctuation in the curvaton field, then the rms amplitude of these perturbations will be asymmetric, and the asymmetry will be most apparent on large angular scales in the CMB. We find that it is only possible to generate the observed asymmetry in the CMB while satisfying the quasar constraint if the curvaton's contribution to the total dark matter density is small, but nonzero. The model also requires that the majority of the primordial power comes from fluctuations in the inflaton field. Future observations and analyses of the CMB will test this model because the power asymmetry generated by this model has a specific spectrum, and the model requires that the current upper bounds on isocurvature power are nearly saturated.

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Cited by 2 Pith papers

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  1. Probing dipolar power asymmetry with galaxy clustering and intrinsic alignments

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    A Fisher forecast shows the galaxy density-intrinsic alignment cross-spectrum can provide up to half the constraining power of galaxy clustering for a dipolar primordial asymmetry, with negligible degradation from bia...

  2. Constraining Scale-Dependent Growth in $f(R)$ Gravity with Future 21 cm Surveys

    astro-ph.CO 2026-06 unverdicted novelty 3.0 of 10

    Forecasts show that future 21 cm surveys can deliver moderate constraints on the scale-dependent growth index and HI bias in viable f(R) models.

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