Hint of a truncated primordial spectrum from the CMB large-scale anomalies
arXiv:2109.05480 · doi:10.1051/0004-6361/202141251
Abstract
Several satellite missions have uncovered a series of potential anomalies in the fluctuation spectrum of the cosmic microwave background temperature, including: (1) an unexpectedly low level of correlation at large angles, manifested via the angular correlation function, C(theta); and (2) missing power in the low multipole moments of the angular power spectrum, C_ell. Their origin is still debated, however, due to a persistent lack of clarity concerning the seeding of quantum fluctuations in the early Universe. A likely explanation for the first of these appears to be a cutoff, k_min=(3.14 +/- 0.36) x 10^{-4} Mpc^{-1}, in the primordial power spectrum, P(k). Our goal in this paper is twofold: (1) we examine whether the same k_min can also self-consistently explain the missing power at large angles, and (2) we confirm that the of this cutoff in P(k) does not adversely affect the remarkable consistency between the prediction of Planck-LCDM and the Planck measurements at ell > 30. We use the publicly available code CAMB to calculate the angular power spectrum, based on a line-of-sight approach. The code is modified slightly to include the additional parameter (i.e., k_min) characterizing the primordial power spectrum. In addition to this cutoff, the code optimizes all of the usual standard-model parameters. In fitting the angular power spectrum, we find an optimized cutoff, k_min = 2.04^{+1.4}_{-0.79} x 10^{-4} Mpc^{-1}, when using the whole range of ell's, and k_min=3.3^{+1.7}_{-1.3} x 10^{-4} Mpc^{-1}, when fitting only the range ell < 30, where the Sachs-Wolfe effect is dominant. These are fully consistent with the value inferred from C(theta), suggesting that both of these large-angle anomalies may be due to the same truncation in P(k).
9 pages, 4 figures, 1 table. Accepted for publication in A&A
References in corpus (13)
- Cosmic Microwave Background Quadrupole and Ellipsoidal Universe
- Ellipsoidal Universe Can Solve The CMB Quadrupole Problem
- The pre-inflationary vacuum in the cosmic microwave background
- Primordial power spectrum from Planck
- Black Hole Remnants in the Early Universe
- Just enough inflation: power spectrum modifications at large scales
- Reconstruction of the Primordial Power Spectrum using Temperature and Polarisation Data from Multiple Experiments
- CMB quadrupole suppression: II. The early fast roll stage
- Effects of a pre-inflation radiation-dominated epoch to CMB anisotropy
- PICO: Probe of Inflation and Cosmic Origins
- Joint Planck and WMAP Assessment of Low CMB Multipoles
- Power Spectrum of Inflationary Attractors
- Viability of slow-roll inflation in light of the non-zero k_min measured in the CMB power spectrum
Cited by in corpus (6)
- Missing large-angle correlations versus even-odd point-parity imbalance in the cosmic microwave background
- A Resolution of the Monopole Problem in the R_h=ct Universe
- Choice of vacuum state and the relation between inflationary and Planck scales
- A Pop III generated dust screen at z~16
- A Comparative Test of the LCDM and R_h=ct Cosmologies Based on Upcoming Redshift Drift Measurements
- Tensor Fluctuations in the Early Universe