Title of article
Fermion wavefunctions in magnetized branes: Theta identities and Yukawa couplings Original Research Article
Author/Authors
Ignatios Antoniadis، نويسنده , , Alok Kumar، نويسنده , , Binata Panda، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
58
From page
116
To page
173
Abstract
Computation of Yukawa couplings, determining superpotentials as well as the Kähler metric, with oblique (non-commuting) fluxes in magnetized brane constructions is an interesting unresolved issue, in view of the importance of such fluxes for obtaining phenomenologically viable models. In order to perform this task, fermion (scalar) wavefunctions on toroidally compactified spaces are presented for general fluxes, parameterized by Hermitian matrices with eigenvalues of arbitrary signatures. We also give explicit mappings among fermion wavefunctions, of different internal chiralities on the tori, which interchange the role of the flux components with the complex structure of the torus. By evaluating the overlap integral of the wavefunctions, we give the expressions for Yukawa couplings among chiral multiplets arising from an arbitrary set of branes (or their orientifold images). The method is based on constructing certain mathematical identities for general Riemann theta functions with matrix valued modular parameter. We briefly discuss an application of the result, for the mass generation of non-chiral fermions, in the image GUT model presented by us in Antoniadis, Kumar and Panda (2008) .
Journal title
Nuclear Physics B
Serial Year
2009
Journal title
Nuclear Physics B
Record number
875670
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