Trans-Planckian corrections to the primordial spectrum in the infra-red and the ultra-violet
arXiv:hep-th/0403236 · doi:10.1103/PhysRevD.70.123520
Abstract
Due to the tremendous red-shift that occurs during the inflationary epoch in the early universe, it has been realized that trans-Planckian physics may manifest itself at energies much lower than the Planck energy. The presence of a fundamental scale suggests that local Lorentz invariance may be violated at sufficiently high energies. Motivated by this possibility, recently, different models that violate Lorentz invariance locally have been used to evaluate the trans-Planckian corrections to the inflationary density perturbation spectrum. However, certain astrophysical observations seem to indicate that local Lorentz invariance may be preserved to extremely high energies. In such a situation, to study the trans-Planckian effects, it becomes imperative to consider models that preserve local Lorentz invariance even as they contain a fundamental scale. In this work, we construct one such model and evaluate the resulting spectrum of density perturbations in the power-law inflationary scenario. While our model reproduces the standard spectrum on small scales, it naturally predicts a suppression of power on large scales. In fact, the spectrum we obtain has some features which are similar to the one that has recently been obtained from non-commutative inflation. However, we find that the amount of suppression predicted by our model is far less than that is required to fit the observations. We comment on the fact that, with a suitable choice of initial conditions, our approach can lead to corrections at the infra-red as well as at the ultra-violet ends of the spectrum.
11 pages, 3 figures, Revtex 4; References added
References in corpus (12)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Preliminary Maps and Basic Results
- Wilkinson Microwave Anisotropy Probe (WMAP) First Year Observations: TE Polarization
- Ultraviolet modifications of dispersion relations in effective field theory
- Lorentz violation and Crab synchrotron emission: a new constraint far beyond the Planck scale
- Reconstructing the primordial power spectrum
- On the Dependence of the Spectra of Fluctuations in Inflationary Cosmology on Trans-Planckian Physics
- Primordial power spectrum from WMAP
- Non-commutative inflation and the CMB
- Mixed inflaton and curvaton perturbations
- Trans-Planckian footprints in inflationary cosmology
- A Note on Curvature Fluctuation of Noncommutative Inflation
Cited by in corpus (21)
- Features and New Physical Scales in Primordial Observables: Theory and Observation
- Punctuated inflation and the low CMB multipoles
- The tensor-to-scalar ratio in punctuated inflation
- Initial state of matter fields and trans-Planckian physics: Can CMB observations disentangle the two?
- Trans-Planckian censorship, inflation and excited initial states for perturbations
- Could PBHs and secondary GWs have originated from squeezed initial states?
- Helical magnetic fields from Riemann coupling
- Planck scale inflationary spectra from quantum gravity
- Modified dispersion relations and the response of the rotating Unruh-DeWitt detector
- Where does Cosmological Perturbation Theory Break Down?
- Gauge-invariant perturbation theory for trans-Planckian inflation
- Helical magnetic fields from Riemann coupling lead to baryogenesis
- Quantum gravitational signatures in next-generation gravitational wave detectors
- Path integral duality and Planck scale corrections to the primordial spectrum in exponential inflation
- Inflation and the semiclassical dynamics of a conformal scalar field
- Expansion-contraction duality breaking in a Planck-scale sensitive cosmological quantum simulator
- Inflation with a stringy minimal length, reworked
- Hints of (trans-Planckian) asymptotic freedom in semiclassical cosmology
- Discrete heat kernel, UV modified Green's function, and higher derivative theories
- Effective field theory of magnetogenesis identify necessary and sufficient conditions
- Signatures of Planck-scale interactions in the cosmic microwave background?