Planck 2018 results. X. Constraints on inflation
Abstract
We report on the implications for cosmic inflation of the 2018 Release of the Planck CMB anisotropy measurements. The results are fully consistent with the two previous Planck cosmological releases, but have smaller uncertainties thanks to improvements in the characterization of polarization at low and high multipoles. Planck temperature, polarization, and lensing data determine the spectral index of scalar perturbations to be at 68% CL and show no evidence for a scale dependence of Spatial flatness is confirmed at a precision of 0.4% at 95% CL with the combination with BAO data. The Planck 95% CL upper limit on the tensor-to-scalar ratio, , is further tightened by combining with the BICEP2/Keck Array BK15 data to obtain . In the framework of single-field inflationary models with Einstein gravity, these results imply that: (a) slow-roll models with a concave potential, are increasingly favoured by the data; and (b) two different methods for reconstructing the inflaton potential find no evidence for dynamics beyond slow roll. Non-parametric reconstructions of the primordial power spectrum consistently confirm a pure power law. A complementary analysis also finds no evidence for theoretically motivated parameterized features in the Planck power spectrum, a result further strengthened for certain oscillatory models by a new combined analysis that includes Planck bispectrum data. The new Planck polarization data provide a stringent test of the adiabaticity of the initial conditions. The polarization data also provide improved constraints on inflationary models that predict a small statistically anisotropic quadrupolar modulation of the primordial fluctuations. However, the polarization data do not confirm physical models for a scale-dependent dipolar modulation.
Keywords
Cite
@article{arxiv.1807.06211,
title = {Planck 2018 results. X. Constraints on inflation},
author = {Planck Collaboration and Y. Akrami and F. Arroja and M. Ashdown and J. Aumont and C. Baccigalupi and M. Ballardini and A. J. Banday and R. B. Barreiro and N. Bartolo and S. Basak and K. Benabed and J. -P. Bernard and M. Bersanelli and P. Bielewicz and J. J. Bock and J. R. Bond and J. Borrill and F. R. Bouchet and F. Boulanger and M. Bucher and C. Burigana and R. C. Butler and E. Calabrese and J. -F. Cardoso and J. Carron and A. Challinor and H. C. Chiang and L. P. L. Colombo and C. Combet and D. Contreras and B. P. Crill and F. Cuttaia and P. de Bernardis and G. de Zotti and J. Delabrouille and J. -M. Delouis and E. Di Valentino and J. M. Diego and S. Donzelli and O. Doré and M. Douspis and A. Ducout and X. Dupac and S. Dusini and G. Efstathiou and F. Elsner and T. A. Enßlin and H. K. Eriksen and Y. Fantaye and J. Fergusson and R. Fernandez-Cobos and F. Finelli and F. Forastieri and M. Frailis and E. Franceschi and A. Frolov and S. Galeotta and S. Galli and K. Ganga and C. Gauthier and R. T. Génova-Santos and M. Gerbino and T. Ghosh and J. González-Nuevo and K. M. Górski and S. Gratton and A. Gruppuso and J. E. Gudmundsson and J. Hamann and W. Handley and F. K. Hansen and D. Herranz and E. Hivon and D. C. Hooper and Z. Huang and A. H. Jaffe and W. C. Jones and E. Keihänen and R. Keskitalo and K. Kiiveri and J. Kim and T. S. Kisner and N. Krachmalnicoff and M. Kunz and H. Kurki-Suonio and G. Lagache and J. -M. Lamarre and A. Lasenby and M. Lattanzi and C. R. Lawrence and M. Le Jeune and J. Lesgourgues and F. Levrier and A. Lewis and M. Liguori and P. B. Lilje and V. Lindholm and M. Lpez-Caniego and P. M. Lubin and Y. -Z. Ma and J. F. Macías-Pérez and G. Maggio and D. Maino and N. Mandolesi and A. Mangilli and A. Marcos-Caballero and M. Maris and P. G. Martin and E. Martínez-González and S. Matarrese and N. Mauri and J. D. McEwen and P. D. Meerburg and P. R. Meinhold and A. Melchiorri and A. Mennella and M. Migliaccio and S. Mitra and M. -A. Miville-Deschênes and D. Molinari and A. Moneti and L. Montier and G. Morgante and A. Moss and M. Münchmeyer and P. Natoli and H. U. Nørgaard-Nielsen and L. Pagano and D. Paoletti and B. Partridge and G. Patanchon and H. V. Peiris and F. Perrotta and V. Pettorino and F. Piacentini and L. Polastri and G. Polenta and J. -L. Puget and J. P. Rachen and M. Reinecke and M. Remazeilles and A. Renzi and G. Rocha and C. Rosset and G. Roudier and J. A. Rubiño-Martín and B. Ruiz-Granados and L. Salvati and M. Sandri and M. Savelainen and D. Scott and E. P. S. Shellard and M. Shiraishi and C. Sirignano and G. Sirri and L. D. Spencer and R. Sunyaev and A. -S. Suur-Uski and J. A. Tauber and D. Tavagnacco and M. Tenti and L. Toffolatti and M. Tomasi and T. Trombetti and J. Valiviita and B. Van Tent and P. Vielva and F. Villa and N. Vittorio and B. D. Wandelt and I. K. Wehus and S. D. M. White and A. Zacchei and J. P. Zibin and A. Zonca},
journal= {arXiv preprint arXiv:1807.06211},
year = {2020}
}
Comments
References added and minor improvements. BICEP2/Keck Array BK15 is used in the place of BICEP2/Keck Array BK14