Off-shell N=(1,0) linear multiplets in six dimensions

We provide a tensor calculus for n -number of N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function F IJ that is subject to certain constraints. We provide various rigid and local supersymmetric models depending on the choice of the function F...

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Published inThe European physical journal. C, Particles and fields Vol. 80; no. 12; pp. 1 - 14
Main Authors Atli, Ugur, Guleryuz, Omer, Ozkan, Mehmet
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.12.2020
Springer Nature B.V
SpringerOpen
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ISSN1434-6044
1434-6052
DOI10.1140/epjc/s10052-020-08773-3

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Abstract We provide a tensor calculus for n -number of N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function F IJ that is subject to certain constraints. We provide various rigid and local supersymmetric models depending on the choice of the function F IJ and provide an interesting off-diagonal superinvariant, which leads to an R 2 supergravity upon elimination of auxiliary fields.
AbstractList Abstract We provide a tensor calculus for n-number of $${\mathcal {N}}= (1,0)$$ N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function $${\mathcal {F}}_{IJ}$$ F IJ that is subject to certain constraints. We provide various rigid and local supersymmetric models depending on the choice of the function $${\mathcal {F}}_{IJ}$$ F IJ and provide an interesting off-diagonal superinvariant, which leads to an $$R^2$$ R 2 supergravity upon elimination of auxiliary fields.
We provide a tensor calculus for n -number of N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function F IJ that is subject to certain constraints. We provide various rigid and local supersymmetric models depending on the choice of the function F IJ and provide an interesting off-diagonal superinvariant, which leads to an R 2 supergravity upon elimination of auxiliary fields.
We provide a tensor calculus for n-number of N=(1,0) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function FIJ that is subject to certain constraints. We provide various rigid and local supersymmetric models depending on the choice of the function FIJ and provide an interesting off-diagonal superinvariant, which leads to an R2 supergravity upon elimination of auxiliary fields.
Author Atli, Ugur
Ozkan, Mehmet
Guleryuz, Omer
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  fullname: Guleryuz, Omer
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  surname: Ozkan
  fullname: Ozkan, Mehmet
  email: ozkanmehm@itu.edu.tr
  organization: Department of Physics, Istanbul Technical University
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Snippet We provide a tensor calculus for n -number of N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function F...
We provide a tensor calculus for n-number of N=(1,0) linear multiplets in six dimensions. The coupling of linear multiplets is encoded in a function FIJ that...
Abstract We provide a tensor calculus for n-number of $${\mathcal {N}}= (1,0)$$ N = ( 1 , 0 ) linear multiplets in six dimensions. The coupling of linear...
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Astrophysics and Cosmology
Elementary Particles
Hadrons
Heavy Ions
Measurement Science and Instrumentation
Nuclear Energy
Nuclear Physics
Physics
Physics and Astronomy
Quantum Field Theories
Quantum Field Theory
Regular Article – Theoretical Physics
String Theory
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Title Off-shell N=(1,0) linear multiplets in six dimensions
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