Probing primordial features with future galaxy surveys
arXiv:1606.03747 · doi:10.1088/1475-7516/2016/10/041
Abstract
We study the capability of future measurements of the galaxy clustering power spectrum to probe departures from a power-law spectrum for primordial fluctuations. On considering the information from the galaxy clustering power spectrum up to quasi-linear scales, i.e. h Mpc, we present forecasts for DESI, Euclid and SPHEREx in combination with CMB measurements. As examples of departures in the primordial power spectrum from a simple power-law, we consider four 2015 best-fits motivated by inflationary models with different breaking of the slow-roll approximation. These four representative models provide an improved fit to CMB temperature anisotropies, although not at statistical significant level. As for other extensions in the matter content of the simplest CDM model, the complementarity of the information in the resulting matter power spectrum expected from these galaxy surveys and in the primordial power spectrum from CMB anisotropies can be effective in constraining cosmological models. We find that the three galaxy surveys can add significant information to CMB to better constrain the extra parameters of the four models considered.
24 pages, 11 figures, version matching JCAP publication, figures fixed
References in corpus (26)
- Cosmology and Fundamental Physics with the Euclid Satellite
- A Joint Analysis of BICEP2/Keck Array and Planck Data
- Monodromy in the CMB: Gravity Waves and String Inflation
- Primordial Non-Gaussianities from Inflation Models
- Late-time cosmology with 21cm intensity mapping experiments
- Generation and Characterization of Large Non-Gaussianities in Single Field Inflation
- Probing cosmological parameters with the CMB: Forecasts from full Monte Carlo simulations
- Cosmology with the SPHEREX All-Sky Spectral Survey
- CLASS: The Cosmology Large Angular Scale Surveyor
- J-PAS: The Javalambre-Physics of the Accelerated Universe Astrophysical Survey
- CMB polarization features from inflation versus reionization
- New Constraints on Oscillations in the Primordial Spectrum of Inflationary Perturbations
- Modelling the number density of Halpha emitters for future spectroscopic near-IR space missions
- Cosmological Fluctuations from Infra-Red Cascading During Inflation
- Primordial power spectrum from Planck
- Luminosity dependence of the spatial and velocity distributions of galaxies: Semi-analytic models versus the Sloan Digital Sky Survey
- Wiggly Whipped Inflation
- Standard Clock in Primordial Density Perturbations and Cosmic Microwave Background
- Combining power spectrum and bispectrum measurements to detect oscillatory features
- Primordial features and Planck polarization
- The large scale CMB cut-off and the tensor-to-scalar ratio
- Improving Fisher matrix forecasts for galaxy surveys: window function, bin cross-correlation, and bin redshift uncertainty
- Detectability of large-scale power suppression in the galaxy distribution
- Large Scale Structure Forecast Constraints on Particle Production During Inflation
- The Large-Scale Polarization Explorer (LSPE)
- A new parameter in attractor single-field inflation
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- Primordial Features from Linear to Nonlinear Scales
- Scratches from the Past: Inflationary Archaeology through Features in the Power Spectrum of Primordial Fluctuations
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- Constraining primordial non-Gaussianity using two galaxy surveys and CMB lensing
- Time-sliced perturbation theory with primordial non-Gaussianity and effects of large bulk flows on inflationary oscillating features
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- One spectrum to cure them all: Signature from early Universe solves major anomalies and tensions in cosmology
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- Imprints of Oscillatory Bispectra on Galaxy Clustering
- Uncovering the History of Cosmic Inflation from Anomalies in Cosmic Microwave Background Spectra
- Cosmological constraints on the gravitational constant
- Non-linear damping of superimposed primordial oscillations on the matter power spectrum in galaxy surveys
- Constraints on inflation with LSS surveys: features in the primordial power spectrum
- Probing primordial features with next-generation photometric and radio surveys
- Primordial Standard Clock Models and CMB Residual Anomalies
- Planck residuals anomaly as a fingerprint of alternative scenarios to inflation
- The degeneracy between primordial non-Gaussianity and foregrounds in 21cm intensity mapping experiments
- Comparing multi-field primordial feature models with the Planck data
- Discordances in cosmology and the violation of slow-roll inflationary dynamics
- Probing features in inflaton potential and reionization history with future CMB space observations
- Probing features in the primordial perturbation spectrum with large-scale structure data
- Searching for Oscillations in the Primordial Power Spectrum with CMB and LSS Data
- Euclid: The search for primordial features
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- A Bayesian analysis of inflationary primordial spectrum models using Planck data
- New constraints on primordial features from the galaxy two-point correlation function
- Back to the features: assessing the discriminating power of future CMB missions on inflationary models
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- Robust predictions for an oscillatory bispectrum in Planck 2015 data from transient reductions in the speed of sound of the inflaton
- Cosmology before noon with multiple galaxy populations
- Chasing cosmic inflation: constraints for inflationary models and reheating insights
- CMB-S4 forecast on the primordial non-Gaussianity parameter of feature models
- Third-order corrections to the slow-roll expansion: calculation and constraints with Planck, ACT, SPT, and BICEP/Keck
- Probing primordial features with the primary CMB
- Effect of damped oscillations in the inflationary potential
- Nonlinear reconstruction of features in the primordial power spectrum from large-scale structure
- Probing signatures of bounce inflation with current observations
- On the primordial origin of the smoothing excess in the temperature power spectrum in light of LSS data
- Understanding large scale CMB anomalies with the generalized non-minimal derivative coupling during inflation
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- Cosmology at high redshift -- a probe of fundamental physics
- Refining the nonlinear modelling of primordial oscillatory features
- Shapes and features of the primordial bispectrum
- Investigating the Origin of CMB Large-Scale Features Using LiteBIRD and CMB-S4
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- Degeneracy in the spectrum and bispectrum among featured inflaton potentials
- A search for super-imposed oscillations to the primordial power spectrum in Planck and SPT-3G 2018 data
- Bayesian inference methodology for Primordial Power Spectrum reconstructions from Large Scale Structure
- The running of featureful primordial power spectra
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- Neural Networks for cosmological model selection and feature importance using Cosmic Microwave Background data
- Inflation Story: slow-roll and beyond
- Investigating the Constraints on Primordial Features with Future Cosmic Microwave Background and Galaxy Surveys
- Particle production during inflation: A Bayesian analysis with CMB data from Planck 2018
- Consistency of Planck Data With Power-Law Primordial Scalar Power Spectrum
- J-PAS: forecast on the primordial power spectrum reconstruction