Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes

A noncommutative geometric configuration of D1-branes is obtained by numeric methods. This configuration is a static BPS solution to the non-Abelian Born-Infeld action, which is dual to an Abelian BPS D3-brane solution with magnetic charges. These monopoles correspond to emergent D1-branes that are...

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Main Author: Sibilia, Ariel
Language:English
Published: University of British Columbia 2013
Online Access:http://hdl.handle.net/2429/45011
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-450112018-01-05T17:26:53Z Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes Sibilia, Ariel A noncommutative geometric configuration of D1-branes is obtained by numeric methods. This configuration is a static BPS solution to the non-Abelian Born-Infeld action, which is dual to an Abelian BPS D3-brane solution with magnetic charges. These monopoles correspond to emergent D1-branes that are attached to the D3-brane's surface and span a transverse direction. In the non-Abelian geometry, there is a topology change from a single noncommutative two-sphere of infinite radius at one end into two isolated two-spheres at infinity, with asymptotically vanishing radii. Recent method for constructing an Abelian surface from a non-Abelian geometry is used on the D1-brane configuration to compare it to the Abelian D3-brane configuration. The D3-brane and the D1-brane pictures are expected to converge for large N, yet surprisingly good agreement is found for N only reaching as high as 6. Science, Faculty of Physics and Astronomy, Department of Graduate 2013-09-03T17:07:51Z 2013-09-03T17:07:51Z 2013 2013-11 Text Thesis/Dissertation http://hdl.handle.net/2429/45011 eng CC0 1.0 Universal http://creativecommons.org/publicdomain/zero/1.0/ University of British Columbia
collection NDLTD
language English
sources NDLTD
description A noncommutative geometric configuration of D1-branes is obtained by numeric methods. This configuration is a static BPS solution to the non-Abelian Born-Infeld action, which is dual to an Abelian BPS D3-brane solution with magnetic charges. These monopoles correspond to emergent D1-branes that are attached to the D3-brane's surface and span a transverse direction. In the non-Abelian geometry, there is a topology change from a single noncommutative two-sphere of infinite radius at one end into two isolated two-spheres at infinity, with asymptotically vanishing radii. Recent method for constructing an Abelian surface from a non-Abelian geometry is used on the D1-brane configuration to compare it to the Abelian D3-brane configuration. The D3-brane and the D1-brane pictures are expected to converge for large N, yet surprisingly good agreement is found for N only reaching as high as 6. === Science, Faculty of === Physics and Astronomy, Department of === Graduate
author Sibilia, Ariel
spellingShingle Sibilia, Ariel
Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
author_facet Sibilia, Ariel
author_sort Sibilia, Ariel
title Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
title_short Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
title_full Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
title_fullStr Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
title_full_unstemmed Noncommutative geometry of multicore bions : numerical solution to the Born Infeld action for D1-branes
title_sort noncommutative geometry of multicore bions : numerical solution to the born infeld action for d1-branes
publisher University of British Columbia
publishDate 2013
url http://hdl.handle.net/2429/45011
work_keys_str_mv AT sibiliaariel noncommutativegeometryofmulticorebionsnumericalsolutiontotheborninfeldactionford1branes
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