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Amid all candidates of physics beyond the Standard Model, string theory provides a unique proposal for incorporating gauge and gravitational interactions. In string theory, a four-dimensional theory that unifies quantum mechanics and gravity is obtained automatically if one posits that the additional dimensions predicted by the theory are small and curled up—a concept known as compactification. The gauge sector of the theory is specified by the topology and geometry of the extra dimensions, and the challenge is to reproduce all of the features of the Standard Model of particle physics from them. We review the state of the art in reproducing the Standard Model from string compactifications and summarize the lessons drawn from this fascinating quest. We describe novel scenarios and mechanisms that string theory provides to address some of the Standard Model puzzles as well as the most frequent signatures of new physics that could be detected in future experiments. We then comment on recent developments that connect, in a rather unexpected way, the Standard Model with quantum gravity and that may change our field theory notion of naturalness.
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Fernando Marchesano
Gary Shiu
Timo Weigand
Annual Review of Nuclear and Particle Science
University of Wisconsin–Madison
Universität Hamburg
Universidad Autónoma de Madrid
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Marchesano et al. (Mon,) studied this question.
www.synapsesocial.com/papers/68e65665b6db6435875e4f90 — DOI: https://doi.org/10.1146/annurev-nucl-102622-012235