Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

This book is placed at the interface between string theory and elementary particle physics and shows novel results in the search for a heterotic string vacuum that reproduces those matter particles and interactions observed in our universe. The author provides a systematic classification of potentially realistic heterotic covariant lattice vacua, which possess a lower number of moduli fields when compared to conventional compactification methods, by means of number theoretical methods. These methods, while well known to the mathematics community, have not yet found many applications to physics. They are introduced to the degree necessary to understand the computations carried out throughout this work. Furthermore, explicit covariant lattice models with particularly interesting properties are analyzed in detail. Finally, new light is shed on the relation between covariant lattice models and asymmetric orbifold compactifications, the result being a concrete correspondence between certain types of asymmetric orbifolds and those classified covariant lattices.

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Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

This book is placed at the interface between string theory and elementary particle physics and shows novel results in the search for a heterotic string vacuum that reproduces those matter particles and interactions observed in our universe. The author provides a systematic classification of potentially realistic heterotic covariant lattice vacua, which possess a lower number of moduli fields when compared to conventional compactification methods, by means of number theoretical methods. These methods, while well known to the mathematics community, have not yet found many applications to physics. They are introduced to the degree necessary to understand the computations carried out throughout this work. Furthermore, explicit covariant lattice models with particularly interesting properties are analyzed in detail. Finally, new light is shed on the relation between covariant lattice models and asymmetric orbifold compactifications, the result being a concrete correspondence between certain types of asymmetric orbifolds and those classified covariant lattices.

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Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

by Florian Beye
Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

Chiral Four-Dimensional Heterotic String Vacua from Covariant Lattices

by Florian Beye

eBook1st ed. 2017 (1st ed. 2017)

$96.99  $129.00 Save 25% Current price is $96.99, Original price is $129. You Save 25%.

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Overview

This book is placed at the interface between string theory and elementary particle physics and shows novel results in the search for a heterotic string vacuum that reproduces those matter particles and interactions observed in our universe. The author provides a systematic classification of potentially realistic heterotic covariant lattice vacua, which possess a lower number of moduli fields when compared to conventional compactification methods, by means of number theoretical methods. These methods, while well known to the mathematics community, have not yet found many applications to physics. They are introduced to the degree necessary to understand the computations carried out throughout this work. Furthermore, explicit covariant lattice models with particularly interesting properties are analyzed in detail. Finally, new light is shed on the relation between covariant lattice models and asymmetric orbifold compactifications, the result being a concrete correspondence between certain types of asymmetric orbifolds and those classified covariant lattices.


Product Details

ISBN-13: 9789811008047
Publisher: Springer-Verlag New York, LLC
Publication date: 11/09/2016
Series: Springer Theses
Sold by: Barnes & Noble
Format: eBook
Pages: 95
File size: 4 MB

About the Author

Florian Beye

Physics Department, Nagoya University

Table of Contents

Introduction.- Classification of Chiral Models.- Model Building.- Summary.

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