A Universal CMB $B$-Mode Spectrum from Early Causal Tensor Sources
Kylar Greene, Aurora Ireland, Gordan Krnjaic, Yuhsin Tsai

TL;DR
This paper shows that early causal tensor sources produce a universal $B$-mode spectrum in the CMB, characterized by a specific scaling behavior, which can distinguish different early universe scenarios.
Contribution
It introduces a unified framework for characterizing early causal tensor sources and demonstrates their universal infrared scaling in CMB $B$ modes and gravitational wave spectra.
Findings
Universal $k^3$ scaling of tensor power spectra at small wavenumber.
Distinct $B$-mode angular power spectra with enhanced small-scale power.
Applicability to various early universe models like phase transitions and defects.
Abstract
Many early universe scenarios predict post-inflationary tensor perturbations from causality-limited, sub-horizon sources. While the microphysical details may differ, as long as these sources are bounded in duration and correlation length, their tensor power spectra exhibit a universal scaling behavior at small wavenumber: , corresponding to white noise on super-horizon scales at the time of production. If these early causal tensor sources (ECTs) exclusively produce gravitational waves before redshift , this scaling is realized on all of the scales observed in the cosmic microwave background (CMB), and thus yields a universal multipole distribution for the -mode angular power spectrum. Unlike the scale-invariant distributions of inflationary modes, ECTs generically predict enhanced power on small scales and suppressed power on large scales, which…
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Taxonomy
TopicsCosmology and Gravitation Theories · Galaxies: Formation, Evolution, Phenomena · Noncommutative and Quantum Gravity Theories
