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Brane-Antibrane Inflation in Orbifold and Orientifold Models

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arxiv hep-th/0111025 v3 pith:A6W6TQAT submitted 2001-11-05 hep-th astro-phhep-ph

Brane-Antibrane Inflation in Orbifold and Orientifold Models

classification hep-th astro-phhep-ph
keywords inflationmodelsstringbranebrane-antibranebranesconditionsdifferent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyse the cosmological implications of brane-antibrane systems in string-theoretic orbifold and orientifold models. In a class of realistic models, consistency conditions require branes and antibranes to be stuck at different fixed points, and so their mutual attraction generates a potential for one of the radii of the underlying torus or the 4D string dilaton. Assuming that all other moduli have been fixed by string effects, we find that this potential leads naturally to a period of cosmic inflation with the radion or dilaton field as the inflaton. The slow-roll conditions are satisfied more generically than if the branes were free to move within the space. The appearance of tachyon fields at certain points in moduli space indicates the onset of phase transitions to different non-BPS brane systems, providing ways of ending inflation and reheating the corresponding observable brane universe. In each case we find relations between the inflationary parameters and the string scale to get the correct spectrum of density perturbations. In some examples the small numbers required as inputs are no smaller than 0.01, and are the same small quantities which are required to explain the gauge hierarchy.

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    In perturbatively moduli-stabilized brane-antibrane inflation, a modest fraction of annihilation energy into visible open strings can trigger a Hagedorn phase that suppresses ΔN_eff when the SM throat string scale is ...