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Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing

The string theory landscape may include a multitude of ultraviolet embeddings of the Standard Model, but identifying these has proven difficult due to the enormous number of available string compactifications. Genetic Algorithms (GAs) represent a powerful class of discrete optimisation techniques th...

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Autores principales: Abel, Steve A., Constantin, Andrei, Harvey, Thomas R., Lukas, Andre, Nutricati, Luca A.
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2867558
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author Abel, Steve A.
Constantin, Andrei
Harvey, Thomas R.
Lukas, Andre
Nutricati, Luca A.
author_facet Abel, Steve A.
Constantin, Andrei
Harvey, Thomas R.
Lukas, Andre
Nutricati, Luca A.
author_sort Abel, Steve A.
collection CERN
description The string theory landscape may include a multitude of ultraviolet embeddings of the Standard Model, but identifying these has proven difficult due to the enormous number of available string compactifications. Genetic Algorithms (GAs) represent a powerful class of discrete optimisation techniques that can efficiently deal with the immensity of the string landscape, especially when enhanced with input from quantum annealers. In this letter we focus on geometric compactifications of the $E_8\times E_8$ heterotic string theory compactified on smooth Calabi-Yau threefolds with Abelian bundles. We make use of analytic formulae for bundle-valued cohomology to impose the entire range of spectrum requirements, something that has not been possible so far. For manifolds with a relatively low number of Kahler parameters we compare the GA search results with results from previous systematic scans, showing that GAs can find nearly all the viable solutions while visiting only a tiny fraction of the solution space. Moreover, we carry out GA searches on manifolds with a larger numbers of Kahler parameters where systematic searches are not feasible.
id cern-2867558
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28675582023-10-20T02:39:23Zhttp://cds.cern.ch/record/2867558engAbel, Steve A.Constantin, AndreiHarvey, Thomas R.Lukas, AndreNutricati, Luca A.Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealingcs.AIComputing and Computershep-thParticle Physics - TheoryThe string theory landscape may include a multitude of ultraviolet embeddings of the Standard Model, but identifying these has proven difficult due to the enormous number of available string compactifications. Genetic Algorithms (GAs) represent a powerful class of discrete optimisation techniques that can efficiently deal with the immensity of the string landscape, especially when enhanced with input from quantum annealers. In this letter we focus on geometric compactifications of the $E_8\times E_8$ heterotic string theory compactified on smooth Calabi-Yau threefolds with Abelian bundles. We make use of analytic formulae for bundle-valued cohomology to impose the entire range of spectrum requirements, something that has not been possible so far. For manifolds with a relatively low number of Kahler parameters we compare the GA search results with results from previous systematic scans, showing that GAs can find nearly all the viable solutions while visiting only a tiny fraction of the solution space. Moreover, we carry out GA searches on manifolds with a larger numbers of Kahler parameters where systematic searches are not feasible.arXiv:2306.03147oai:cds.cern.ch:28675582023-06-05
spellingShingle cs.AI
Computing and Computers
hep-th
Particle Physics - Theory
Abel, Steve A.
Constantin, Andrei
Harvey, Thomas R.
Lukas, Andre
Nutricati, Luca A.
Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title_full Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title_fullStr Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title_full_unstemmed Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title_short Decoding Nature with Nature's Tools: Heterotic Line Bundle Models of Particle Physics with Genetic Algorithms and Quantum Annealing
title_sort decoding nature with nature's tools: heterotic line bundle models of particle physics with genetic algorithms and quantum annealing
topic cs.AI
Computing and Computers
hep-th
Particle Physics - Theory
url http://cds.cern.ch/record/2867558
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