Localization of matter fields and non-Abelian gauge fields on domain walls
- NázevTitle
- Localization of matter fields and non-Abelian gauge fields on domain wallsLocalization of matter fields and non-Abelian gauge fields on domain walls
- Druh výsledkuResult type
- Příspěvek ve sborníkuProceedings paper
- AutořiAuthors
- F. Blaschke, M. Arai, M. Eto, N. Sakai
- Klíčová slovaKeywords
- Domain walls, brane-world scenario
- KonferenceConference
- 20th International Colloquium on Integrable Systems and Quantum Symmetries (Prague, Czechia, 2012-06-17)
- DOIDOI
- 10.1088/1742-6596/411/1/012001
- Časopis / citaceJournal / citation
- Journal of Physics: Conference Series 411, 012001 (2013) · ISSN 1742-6588
- RokYear
- 2013
- JazykLanguage
- eng
- ZáznamyRecords
- ProjektProject
- Mezinárodní experiment ATLAS-CERNInternational experiment ATLAS-CERN; Supersymetrie v teoriích pole a strun a ve fyzice za Standardním modelemSupersymmetry in field and string theories and in physics beyond the Standard Model
- CitovánoCited by
- 4 (INSPIRE-HEP)
- Citace ke staženíDownload citation
- TXT · BibTeX
AbstraktAbstract
We propose a method for simultaneous localization of non-Abelian gauge fields and matter fields with minimal interaction on domain walls using gauge theory with flavor symmetry. Localization of non-Abelian fields is achieved using field-dependent gauge coupling. We find that effective Lagrangian up to second order of derivatives for low energy fluctuations resembles a chiral model from hadron physics with additional minimal interactions of pions with localized gauge fields together with nonlinear interactions of moduli fields. This result provides a step towards a realistic model building of brane-world scenario using topological solitons.
We propose a method for simultaneous localization of non-Abelian gauge fields and matter fields with minimal interaction on domain walls using gauge theory with flavor symmetry. Localization of non-Abelian fields is achieved using field-dependent gauge coupling. We find that effective Lagrangian up to second order of derivatives for low energy fluctuations resembles a chiral model from hadron physics with additional minimal interactions of pions with localized gauge fields together with nonlinear interactions of moduli fields. This result provides a step towards a realistic model building of brane-world scenario using topological solitons.