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Judul Noncommutative Geometry and Particle Physics / Walter D. van Suijlekom
Pengarang van Suijlekom, Walter D.
Penerbitan Cham : Springer Nature, 2025
Deskripsi Fisik 315 hlm. :ill
ISBN 9783031591204
Subjek Mathematical physics
Catatan This book provides an introduction to noncommutative geometry and presents a number of its recent applications to particle physics. In the first part, we introduce the main concepts and techniques by studying finite noncommutative spaces, providing a “light” approach to noncommutative geometry. We then proceed with the general framework by defining and analyzing noncommutative spin manifolds and deriving some main results on them, such as the local index formula. In the second part, we show how noncommutative spin manifolds naturally give rise to gauge theories, applying this principle to specific examples. We subsequently geometrically derive abelian and non-abelian Yang-Mills gauge theories, and eventually the full Standard Model of particle physics, and conclude by explaining how noncommutative geometry might indicate how to proceed beyond the Standard Model
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Lokasi Akses Online https://oer.unair.ac.id/files/original/9f561a68c5c2d429d38a94314eb05bee.pdf

 
No Barcode No. Panggil Akses Lokasi Ketersediaan
376625192 539.7 Van n Baca Online Perpustakaan Pusat - Online Resources
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245 1 # $a Noncommutative Geometry and Particle Physics /$c Walter D. van Suijlekom
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300 # # $a 315 hlm. : $b ill
505 # # $a This book provides an introduction to noncommutative geometry and presents a number of its recent applications to particle physics. In the first part, we introduce the main concepts and techniques by studying finite noncommutative spaces, providing a “light” approach to noncommutative geometry. We then proceed with the general framework by defining and analyzing noncommutative spin manifolds and deriving some main results on them, such as the local index formula. In the second part, we show how noncommutative spin manifolds naturally give rise to gauge theories, applying this principle to specific examples. We subsequently geometrically derive abelian and non-abelian Yang-Mills gauge theories, and eventually the full Standard Model of particle physics, and conclude by explaining how noncommutative geometry might indicate how to proceed beyond the Standard Model
650 # # $a Mathematical physics
856 # # $a https://oer.unair.ac.id/files/original/9f561a68c5c2d429d38a94314eb05bee.pdf
990 # # $a 376625192
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