TASI lectures on cosmological observables and string theory
arXiv:1606.03640 · doi:10.1142/9789813149441_0009
Abstract
These lectures provide an updated pedagogical treatment of the theoretical structure and phenomenology of some basic mechanisms for inflation, along with an overview of the structure of cosmological uplifts of holographic duality. A full treatment of the problem requires `ultraviolet completion' because of the sensitivity of inflation to quantum gravity effects, including back reaction and non-adiabatic production of heavy degrees of freedom. Cosmological observations imply accelerated expansion of the late universe, and provide increasingly precise constraints and discovery potential on the amplitude and shape of primordial tensor and scalar perturbations, and some of their correlation functions. Most backgrounds of string theory have positive potential energy, with a rich but still highly constrained landscape of solutions. The theory contains novel mechanisms for inflation, some subject to significant observational tests. Although the detailed ultraviolet completion is not accessible experimentally, some of these mechanisms directly stimulate a more systematic analysis of the space of low energy theories and signatures relevant for analysis of data, which is sensitive to physics orders of magnitude above the energy scale of inflation as a result of long time evolution (dangerous irrelevance) and the substantial amount of data. Portions of these lectures appeared previously in Les Houches 2013, "Post-Planck Cosmology" .
Review article. 52 pages, 2 figures. arXiv admin note: substantial text overlap with arXiv:1311.2312
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- The Kontsevich-Segal Criterion in the No-Boundary State Constrains Inflation
- Position-Dependent Mass Quantum systems and ADM formalism
- Supersymmetric Horizons at the Edge of Effective Field Theory
- Non-perpetual Eternal Inflation and the Emergent de Sitter Swampland Conjecture
- Very-High-Frequency Gravitational Waves from Multi-Monodromy Inflation