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Stars and Black Holes from the very Early Universe
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A mechanism of creation of stellar-like objects in the very early universe, from the QCD phase transition till BBN and somewhat later, is studied. It is argued that in the considered process primordial black holes with masses above a few solar masses up to super-heavy ones could be created. This may explain an early quasar creation with evolved chemistry in surrounding medium and the low mass cutoff of the observed black holes. It is also shown that dense primordial stars can be created at the considered epoch. Such stars could later become very early supernovae and in particular high redshift gamma-bursters. In a version of the model some of the created objects can consist of antimatter.
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Antimatter in the universe and Milky Way
A review-style paper asserts that primordial antimatter produced during inflation populates the Milky Way and that observations of positrons, antihelium, and antistar candidates confirm this prediction.
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