Features in the Inflaton Potential and the Spectrum of Cosmological Perturbations
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-55098-0_13
Reference106 articles.
1. I. Dalianis, Constraints on the curvature power spectrum from primordial black hole evaporation. JCAP 08, 032 (2019). (arXiv:1812.09807 [astro-ph.CO])
2. S. Ando, N. Hiroshima, K. Ishiwata, Constraining the primordial curvature perturbation using dark matter substructure. Phys. Rev. D 106(10), 103014 (2022). (arXiv:2207.05747 [astro-ph.CO])
3. Y. Yang, Constraints on primordial black holes and curvature perturbations from the global 21-cm signal. Phys. Rev. D 102(8), 083538 (2020). (arXiv:2009.11547 [astro-ph.CO])
4. A.D. Gow, C.T. Byrnes, P.S. Cole, S. Young, The power spectrum on small scales: robust constraints and comparing PBH methodologies. JCAP 02, 002 (2021). (arXiv:2008.03289 [astro-ph.CO])
5. B. Carr, T. Tenkanen, V. Vaskonen, Primordial black holes from inflaton and spectator field perturbations in a matter-dominated era. Phys. Rev. D 96(6), 063507 (2017). (arXiv:1706.03746 [astro-ph.CO])
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