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November 10, 1996The Astrophysical Journal956 citationsOpen Access

Small‐Scale Cosmological Perturbations: An Analytic Approach

WHWayne HuNSNaoshi Sugiyama

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Abstract

Through analytic techniques verified by numerical calculations, we establish general relations between the matter and cosmic microwave background (CMB) power spectra and their dependence on parameters on small scales. Fluctuations in the CMB, baryons, cold dark matter (CDM), and neutrinos receive a boost at horizon crossing. Baryon drag on the photons causes alternating acoustic peak heights in the CMB and is uncovered in its bare form under the photon diffusion scale. Decoupling of the photons at last scattering and of the baryons at the end of the Compton drag epoch freezes the di†usion-damped acoustic oscillations into the CMB and matter power spectra at di†erent scales. We determine the dependence of the respective acoustic amplitudes and damping lengths on fundamental cosmological parameters. The baryonic oscillations, enhanced by the velocity overshoot e†ect, compete with CDM fluctuations in the present matter power spectrum. We present new exact analytic solutions for the cold dark matter fluctuations in the presence of a growth-inhibiting radiation and baryon background. Combined with the acoustic contributions and baryonic infall into CDM potential wells, this provides a highly accurate analytic form of the small-scale transfer function in the general case.

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Cite This Study

Hu et al. (1996) studied this question.

synapsesocial.com/papers/69e9ca3faf6bc739daa819c1https://doi.org/10.1086/177989
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