arXiv · 2307.02067
Primordial black holes and scalar induced density perturbations: the effects of probability density functions
Abstract
We investigate the second order energy density perturbation $\delta^{(2)}$ induced by small-scale Gaussian and local-type non-Gaussian primordial curvature perturbations. The relative abundance of primordial black hole is calculated in terms of the probability density function of total energy density perturbation $\delta_r=\delta^{(1)}+\frac{1}{2}\delta^{(2)}$. The effects of second order density perturbation greatly reduce the upper bounds of small-scale power spectra of primordial curvature perturbations by one to two orders of magnitude. For log-normal primordial power spectrum, its amplitude $A_{\zeta}$ is constrained to be about $A_{\zeta}\sim 3\times10^{-3}$. And for local-type non-Gaussianity with $f_{\mathrm{NL}}=10$, the upper bound of $A_{\zeta}$ is about $2.5\times10^{-4}$.
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Jing-Zhi Zhou, Yu-Ting Kuang, Zhe Chang, Xukun Zhang, Qing-Hua Zhu. 2023-07-05. Primordial black holes and scalar induced density perturbations: the effects of probability density functions. https://arxiv.org/abs/2307.02067
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