The Landscape of Free Fermionic Gauge Models

Nonfiction, Science & Nature, Science, Physics, Nuclear Physics, Quantum Theory
Cover of the book The Landscape of Free Fermionic Gauge Models by Douglas G. Moore, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Douglas G. Moore ISBN: 9783319246185
Publisher: Springer International Publishing Publication: February 3, 2016
Imprint: Springer Language: English
Author: Douglas G. Moore
ISBN: 9783319246185
Publisher: Springer International Publishing
Publication: February 3, 2016
Imprint: Springer
Language: English

In this thesis, the author describes the development of a software framework to systematically construct a particular class of weakly coupled free fermionic heterotic string models, dubbed gauge models. In their purest form, these models are maximally supersymmetric (N = 4), and thus only contain superpartners in their matter sector. This feature makes their systematic construction particularly efficient, and they are thus useful in their simplicity.  The thesis first provides a brisk introduction to heterotic strings and the spin-structure construction of free fermionic models. Three systematic surveys are then presented, and it is conjectured that these surveys are exhaustive modulo redundancies. Finally, the author presents a collection of metaheuristic algorithms for searching the landscape for models with a user-specified spectrum of phenomenological properties, e.g. gauge group and number of spacetime supersymmetries. Such algorithms provide the groundwork for extended generic free fermionic surveys.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

In this thesis, the author describes the development of a software framework to systematically construct a particular class of weakly coupled free fermionic heterotic string models, dubbed gauge models. In their purest form, these models are maximally supersymmetric (N = 4), and thus only contain superpartners in their matter sector. This feature makes their systematic construction particularly efficient, and they are thus useful in their simplicity.  The thesis first provides a brisk introduction to heterotic strings and the spin-structure construction of free fermionic models. Three systematic surveys are then presented, and it is conjectured that these surveys are exhaustive modulo redundancies. Finally, the author presents a collection of metaheuristic algorithms for searching the landscape for models with a user-specified spectrum of phenomenological properties, e.g. gauge group and number of spacetime supersymmetries. Such algorithms provide the groundwork for extended generic free fermionic surveys.

More books from Springer International Publishing

Cover of the book Balancing the Common Core Curriculum in Middle School Education by Douglas G. Moore
Cover of the book Blended Learning. New Challenges and Innovative Practices by Douglas G. Moore
Cover of the book Shakespeare, Bakhtin, and Film by Douglas G. Moore
Cover of the book Chocolate, Politics and Peace-Building by Douglas G. Moore
Cover of the book Women Leaders in Chaotic Environments by Douglas G. Moore
Cover of the book Jesus' Crucifixion Beatings and the Book of Proverbs by Douglas G. Moore
Cover of the book High Precision Optical Spectroscopy and Quantum State Selected Photodissociation of Ultracold 88Sr2 Molecules in an Optical Lattice by Douglas G. Moore
Cover of the book Coalbed Methane in India by Douglas G. Moore
Cover of the book National Forest Inventories by Douglas G. Moore
Cover of the book Nordic Girlhoods by Douglas G. Moore
Cover of the book Quick Start Guide to VHDL by Douglas G. Moore
Cover of the book Biomechanics of the Brain by Douglas G. Moore
Cover of the book ArcGIS for Environmental and Water Issues by Douglas G. Moore
Cover of the book Terrorism, Technology and Apocalyptic Futures by Douglas G. Moore
Cover of the book Intelligent Computing Theories and Application by Douglas G. Moore
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy