Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1844210 | Nuclear Physics B | 2007 | 36 Pages |
Abstract
We analyze the proton decay via dimension six operators in supersymmetric SU(5)-grand unified models based on intersecting D6-brane constructions in type IIA string theory orientifolds. We include in addition to 10â1010â10 interactions also the operators arising from 5¯â5¯10â10 interactions. We provide a detailed construction of vertex operators for any massless string excitation arising for arbitrary intersecting D-brane configurations in type IIA toroidal orientifolds. In particular, we provide explicit string vertex operators for the 10 and 5¯ chiral superfields and calculate explicitly the string theory correlation functions for above operators. In the analysis we chose the most symmetric configurations in order to maximize proton decay rates for the above dimension six operators and we obtain a small enhancement relative to the field theory result. After relating the string proton decay rate to field theory computations the string contribution to the proton lifetime is ÏpST=(0.5-2.1)Ã1036 years, which could be up to a factor of three shorter than that predicted in field theory.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Mirjam CvetiÄ, Robert Richter,