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Results for “baryogenesis & leptogenesis”
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Assessing the tension between a black hole dominated early universe and leptogenesis
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Affleck-Dine leptogenesis with one loop neutrino masses and a solution to the strong C P problem
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Predicting the dark matter-baryon abundance ratio
We discuss relaxation solutions to the dark matter-baryon coincidence problem in the context of QCD axion dark matter. In relaxation solutions, a moduli dynamically adjusts the mass of dark matter and baryons until their energy densities are 𝒪(1) the same. Because the QCD axion is heavily connected to QCD, scanning the QCD axion mass inherently also scans the proton mass. In the context of relaxation solutions, this implies that the ratio of dark matter to baryon abundances (Ω DM /Ω B ) is a ratio of beta functions showing that these models can only accommodate discrete values of ΩDM/ΩB thereby “predicting” the ratio of the dark matter to baryon abundances. The original composite axion model has only a single integer degree of freedom 𝑁, the size of the gauge group, and we show that when 𝑁 =8 the observed value of Ω DM /Ω B =5.36 is reproduced to within its percent level error bars. Novel tests of this model include more precise measurements of Ω DM /Ω B , a better lattice determination of the dependence of the proton mass on the high energy QCD gauge coupling, as well as more traditional tests such as fifth force experiments.
New approach to electroweak symmetry nonrestoration
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Unified model for inflation, pseudo-Goldstone dark matter, neutrino mass, and baryogenesis
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μ -hybrid inflation, gravitino dark matter, and stochastic gravitational wave background from cosmic strings
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Asymmetric matter from a dark first-order phase transition
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Baryogenesis and primordial black hole dark matter from heavy metastable particles
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Fireball baryogenesis from early structure formation due to Yukawa forces
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Axion cogenesis without isocurvature perturbations
Axion rotations can simultaneously explain the dark matter abundance and the baryon asymmetry of the Universe by kinetic misalignment and axiogenesis. We consider a scenario in which the Peccei-Quinn symmetry breaking field is as large as the Planck scale during inflation and the axion rotation is initiated by the inflaton-induced potential immediately after the end of inflation. This is a realization of the cogenesis scenario that is free of problems with domain walls and isocurvature perturbations thanks to large explicit Peccei-Quinn symmetry breaking at the Planck scale during inflation. The baryon asymmetry can be more efficiently produced by leptoaxiogenesis, in which case the axion mass is predicted to be larger than O(0.1) meV. We also discuss a UV complete model in supersymmetric theories.
Detectable Gravitational Wave Signals from Affleck-Dine Baryogenesis
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