Non supersymmetric large N background for two Yang-Mills coupled matrices

The study of matrix models is of considerable significance. In this thesis we study the large N quantum mechanics of two matrices (X1,X2), coupled via a Yang-Mills interaction, in a non supersymmetric setting. Of the two matrices, X1 is treated exactly,while X2 is understood as an “impurity” in t...

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Main Author: Zaidi, Alia
Format: Others
Language:en
Published: 2011
Online Access:http://hdl.handle.net/10539/9239
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-wits-oai-wiredspace.wits.ac.za-10539-92392019-05-11T03:41:42Z Non supersymmetric large N background for two Yang-Mills coupled matrices Zaidi, Alia The study of matrix models is of considerable significance. In this thesis we study the large N quantum mechanics of two matrices (X1,X2), coupled via a Yang-Mills interaction, in a non supersymmetric setting. Of the two matrices, X1 is treated exactly,while X2 is understood as an “impurity” in the background of the first. Considering the ground statewavefunctionwith no X2 “impurities”, it is observed that this state depends on the eigenvalues of the X1 matrix, resulting in additional shifts in the calculation of the kinetic term for the X1 sector. This results in an effective potential which, using the results of collective field theory, is used to obtain the planar large N nonsupersymmetric background. The system is studied in both weak and strong coupling. The strong coupling system is free of infrared divergences. 2011-03-28T06:45:53Z 2011-03-28T06:45:53Z 2011-03-28 Thesis http://hdl.handle.net/10539/9239 en application/pdf
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language en
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description The study of matrix models is of considerable significance. In this thesis we study the large N quantum mechanics of two matrices (X1,X2), coupled via a Yang-Mills interaction, in a non supersymmetric setting. Of the two matrices, X1 is treated exactly,while X2 is understood as an “impurity” in the background of the first. Considering the ground statewavefunctionwith no X2 “impurities”, it is observed that this state depends on the eigenvalues of the X1 matrix, resulting in additional shifts in the calculation of the kinetic term for the X1 sector. This results in an effective potential which, using the results of collective field theory, is used to obtain the planar large N nonsupersymmetric background. The system is studied in both weak and strong coupling. The strong coupling system is free of infrared divergences.
author Zaidi, Alia
spellingShingle Zaidi, Alia
Non supersymmetric large N background for two Yang-Mills coupled matrices
author_facet Zaidi, Alia
author_sort Zaidi, Alia
title Non supersymmetric large N background for two Yang-Mills coupled matrices
title_short Non supersymmetric large N background for two Yang-Mills coupled matrices
title_full Non supersymmetric large N background for two Yang-Mills coupled matrices
title_fullStr Non supersymmetric large N background for two Yang-Mills coupled matrices
title_full_unstemmed Non supersymmetric large N background for two Yang-Mills coupled matrices
title_sort non supersymmetric large n background for two yang-mills coupled matrices
publishDate 2011
url http://hdl.handle.net/10539/9239
work_keys_str_mv AT zaidialia nonsupersymmetriclargenbackgroundfortwoyangmillscoupledmatrices
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