Phenomenological Signatures from Warped Supersymmetry in the String Landscape

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Autori principali: Revista, Zen, PHYSICS, 10
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Revista, Zen
PHYSICS, 10
author_facet Revista, Zen
PHYSICS, 10
contents This paper explores the phenomenological implications of supersymmetric models embedded within warped extra dimensions, as motivated by the string landscape. We investigate how the unique geometry of Anti-de Sitter space, coupled with mechanisms for supersymmetry breaking and moduli stabilization, shapes the low-energy effective theory and gives rise to distinct observable signatures. The framework of warped supersymmetry offers a compelling solution to the hierarchy problem and provides a natural context for mediating supersymmetry breaking. We discuss how these models predict modified Higgs boson properties, novel Kaluza-Klein excitation spectra for Standard Model particles, and specific dark matter candidates, often with masses accessible at current or future collider experiments. Furthermore, we analyze the impact on flavor physics and electroweak precision observables, contrasting these predictions with those from flat extra dimension models and other beyond-Standard Model scenarios. The interplay between warped geometry, supersymmetry, and the vast string landscape presents a rich phenomenology, whose experimental verification could offer profound insights into the fundamental structure of spacetime and matter.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17750486
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Phenomenological Signatures from Warped Supersymmetry in the String Landscape
Revista, Zen
PHYSICS, 10
This paper explores the phenomenological implications of supersymmetric models embedded within warped extra dimensions, as motivated by the string landscape. We investigate how the unique geometry of Anti-de Sitter space, coupled with mechanisms for supersymmetry breaking and moduli stabilization, shapes the low-energy effective theory and gives rise to distinct observable signatures. The framework of warped supersymmetry offers a compelling solution to the hierarchy problem and provides a natural context for mediating supersymmetry breaking. We discuss how these models predict modified Higgs boson properties, novel Kaluza-Klein excitation spectra for Standard Model particles, and specific dark matter candidates, often with masses accessible at current or future collider experiments. Furthermore, we analyze the impact on flavor physics and electroweak precision observables, contrasting these predictions with those from flat extra dimension models and other beyond-Standard Model scenarios. The interplay between warped geometry, supersymmetry, and the vast string landscape presents a rich phenomenology, whose experimental verification could offer profound insights into the fundamental structure of spacetime and matter.
title Phenomenological Signatures from Warped Supersymmetry in the String Landscape
url https://doi.org/10.5281/zenodo.17750486