Standard Clock in Primordial Density Perturbations and Cosmic Microwave Background
arXiv:1404.1536 · doi:10.1016/j.physletb.2014.11.002
Abstract
Standard Clocks in the primordial epoch leave a special type of features in the primordial perturbations, which can be used to directly measure the scale factor of the primordial universe as a function of time a(t), thus discriminating between inflation and alternatives. We have started to search for such signals in the Planck 2013 data using the key predictions of the Standard Clock. In this Letter, we summarize the key predictions of the Standard Clock and present an interesting candidate example in Planck 2013 data. Motivated by this candidate, we construct and compute full Standard Clock models and use the more complete prediction to make more extensive comparison with data. Although this candidate is not yet statistically significant, we use it to illustrate how Standard Clocks appear in Cosmic Microwave Background and how they can be further tested by future data. We also use it to motivate more detailed theoretical model building.
16 pages; v2, comments added, discussion on large field models revised and details deferred to a forthcoming publication
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Cited by in corpus (9)
- Models of the Primordial Standard Clock
- Combining power spectrum and bispectrum measurements to detect oscillatory features
- Scratches from the Past: Inflationary Archaeology through Features in the Power Spectrum of Primordial Fluctuations
- A Direct Probe of the Evolutionary History of the Primordial Universe
- Combined features in the primordial spectra induced by a sudden turn in two-field DBI inflation
- Local random potentials of high differentiability to model the Landscape
- Quantum quenches during inflation
- Schwinger-Keldysh mechanism in extended quasi single field inflation
- Non-linear effects in early Universe cosmology