511 research outputs found

    Natural inflation with and without modulations in type IIB string theory

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    We propose a mechanism for the natural inflation with and without modulation in the framework of type IIB string theory on toroidal orientifold or orbifold. We explicitly construct the stabilization potential of complex structure, dilaton and K\"ahler moduli, where one of the imaginary component of complex structure moduli becomes light which is identified as the inflaton. The inflaton potential is generated by the gaugino-condensation term which receives the one-loop threshold corrections determined by the field value of complex structure moduli and the axion decay constant of inflaton is enhanced by the inverse of one-loop factor. We also find the threshold corrections can also induce the modulations to the original scalar potential for the natural inflation. Depending on these modulations, we can predict several sizes of tensor-to-scalar ratio as well as the other cosmological observables reported by WMAP, Planck and/or BICEP2 collaborations.Comment: 18 pages, 4 figures, Typos corrected, references and comments adde

    Realistic three-generation models from SO(32) heterotic string theory

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    We search for realistic supersymmetric standard-like models from SO(32) heterotic string theory on factorizable tori with multiple magnetic fluxes. Three chiral ganerations of quarks and leptons are derived from the adjoint and vector representations of SO(12) gauge groups embedded in SO(32) adjoint representation. Massless spectra of our models also include Higgs fields, which have desired Yukawa couplings to quarks and leptons at the tree-level.Comment: 29 pages, Typos corrected, references added, and Sec. 3.3 is adde

    Gauge coupling unification in SO(32) heterotic string theory with magnetic fluxes

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    We study SO(32)SO(32) heterotic string theory on torus with magnetic fluxes. Non-vanishing fluxes can lead to non-universal gauge kinetic functions for SU(3)×SU(2)×U(1)YSU(3) \times SU(2) \times U(1)_Y which is the important features of SO(32)SO(32) heterotic string theory in contrast to the E8×E8E_8\times E_8 theory. It is found that the experimental values of gauge couplings are realized with O(1){\cal O}(1) values of moduli fields based on the realistic models with the SU(3)×SU(2)×U(1)YSU(3) \times SU(2) \times U(1)_Y gauge symmetry and three chiral generations of quarks and leptons without chiral exotics.Comment: 20 pages, 9 figure
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