Matrix factorizations and elliptic fibrations
I use matrix factorizations to describe branes at simple singularities of elliptic fibrations. Each node of the corresponding Dynkin diagrams of the ADE-type singularities is associated with one indecomposable matrix factorization which can be deformed into one or more factorizations of lower rank....
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2016-09-01
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Series: | Nuclear Physics B |
Online Access: | http://www.sciencedirect.com/science/article/pii/S0550321316301961 |
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doaj-4e6351e915114081a9774806c5ceaa3d2020-11-25T01:35:50ZengElsevierNuclear Physics B0550-32131873-15622016-09-01910C43145710.1016/j.nuclphysb.2016.07.013Matrix factorizations and elliptic fibrationsHarun OmerI use matrix factorizations to describe branes at simple singularities of elliptic fibrations. Each node of the corresponding Dynkin diagrams of the ADE-type singularities is associated with one indecomposable matrix factorization which can be deformed into one or more factorizations of lower rank. Branes with internal fluxes arise naturally as bound states of the indecomposable factorizations. Describing branes in such a way avoids the need to resolve singularities. This paper looks at gauge group breaking from E8 fibers down to SU(5) fibers due to the relevance of such fibrations for local F-theory GUT models. A purpose of this paper is to understand how the deformations of the singularity are understood in terms of its matrix factorizations. By systematically factorizing the elliptic fiber equation, this paper discusses geometries which are relevant for building semi-realistic local models. In the process it becomes evident that breaking patterns which are identical at the level of the Kodaira type of the fibers can be inequivalent at the level of matrix factorizations. Therefore the matrix factorization picture supplements information which the conventional less detailed descriptions lack.http://www.sciencedirect.com/science/article/pii/S0550321316301961 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Harun Omer |
spellingShingle |
Harun Omer Matrix factorizations and elliptic fibrations Nuclear Physics B |
author_facet |
Harun Omer |
author_sort |
Harun Omer |
title |
Matrix factorizations and elliptic fibrations |
title_short |
Matrix factorizations and elliptic fibrations |
title_full |
Matrix factorizations and elliptic fibrations |
title_fullStr |
Matrix factorizations and elliptic fibrations |
title_full_unstemmed |
Matrix factorizations and elliptic fibrations |
title_sort |
matrix factorizations and elliptic fibrations |
publisher |
Elsevier |
series |
Nuclear Physics B |
issn |
0550-3213 1873-1562 |
publishDate |
2016-09-01 |
description |
I use matrix factorizations to describe branes at simple singularities of elliptic fibrations. Each node of the corresponding Dynkin diagrams of the ADE-type singularities is associated with one indecomposable matrix factorization which can be deformed into one or more factorizations of lower rank. Branes with internal fluxes arise naturally as bound states of the indecomposable factorizations. Describing branes in such a way avoids the need to resolve singularities. This paper looks at gauge group breaking from E8 fibers down to SU(5) fibers due to the relevance of such fibrations for local F-theory GUT models. A purpose of this paper is to understand how the deformations of the singularity are understood in terms of its matrix factorizations. By systematically factorizing the elliptic fiber equation, this paper discusses geometries which are relevant for building semi-realistic local models. In the process it becomes evident that breaking patterns which are identical at the level of the Kodaira type of the fibers can be inequivalent at the level of matrix factorizations. Therefore the matrix factorization picture supplements information which the conventional less detailed descriptions lack. |
url |
http://www.sciencedirect.com/science/article/pii/S0550321316301961 |
work_keys_str_mv |
AT harunomer matrixfactorizationsandellipticfibrations |
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