Analytical calculation of the observational parameters for tachyon inflation

Fuente: arXiv
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Main Authors: Stojanovic, Marko, Bilić, Neven, Djordjevic, Goran S., Dimitrijevic, Dragoljub D., Milosevic, Milan
Format: Preprint
Published: 2026
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_version_ 1866913174772514816
author Stojanovic, Marko
Bilić, Neven
Djordjevic, Goran S.
Dimitrijevic, Dragoljub D.
Milosevic, Milan
author_facet Stojanovic, Marko
Bilić, Neven
Djordjevic, Goran S.
Dimitrijevic, Dragoljub D.
Milosevic, Milan
contents We investigate the possibility of analytically calculating observational parameters in tachyon inflation cosmology, using the Hubble expansion rate as a function of the tachyon field. First, in light of the newer Planck results, we analyze previous investigations in which the test Hubble rate functions were confronted with Planck 2013 data. We propose and analyze a number of new test Hubble rate functions, finding considerable improvement and approaching reasonable agreement with recent observational data. For a class of these functions, we were able to carry out analytical calculations. As a novelty, we introduce a functional dependence of the slow-roll Hubble flow parameters as an input, which facilitates an analytical study of inflation. In this way, we obtain explicit expressions for the scalar spectral index ($n_{\rm s}$) and the tensor-to-scalar ratio ($r$). We confront our analytical and numerical predictions with Planck observational constraints. Finally, we discuss the proposed linear dependence between the first two slow-roll parameters in light of recent data from ACT DR6, DESI, and others, as well as the potential to generalize this dependence to other inflation models.
format Preprint
id arxiv_https___arxiv_org_abs_2606_00195
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Analytical calculation of the observational parameters for tachyon inflation
Stojanovic, Marko
Bilić, Neven
Djordjevic, Goran S.
Dimitrijevic, Dragoljub D.
Milosevic, Milan
General Relativity and Quantum Cosmology
We investigate the possibility of analytically calculating observational parameters in tachyon inflation cosmology, using the Hubble expansion rate as a function of the tachyon field. First, in light of the newer Planck results, we analyze previous investigations in which the test Hubble rate functions were confronted with Planck 2013 data. We propose and analyze a number of new test Hubble rate functions, finding considerable improvement and approaching reasonable agreement with recent observational data. For a class of these functions, we were able to carry out analytical calculations. As a novelty, we introduce a functional dependence of the slow-roll Hubble flow parameters as an input, which facilitates an analytical study of inflation. In this way, we obtain explicit expressions for the scalar spectral index ($n_{\rm s}$) and the tensor-to-scalar ratio ($r$). We confront our analytical and numerical predictions with Planck observational constraints. Finally, we discuss the proposed linear dependence between the first two slow-roll parameters in light of recent data from ACT DR6, DESI, and others, as well as the potential to generalize this dependence to other inflation models.
title Analytical calculation of the observational parameters for tachyon inflation
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2606.00195