String theory reduces to the Standard Model in specific low-energy limits
Multiple studies demonstrate that string theory can be compactified in specific limits to reproduce the gauge group and particle spectrum of the Standard Model.
The retrieved physics papers consistently support the premise that string theory constructions and compactifications can yield the Standard Model in specific low-energy limits.
C. Bachas. A WAY TO BREAK SUPERSYMMETRY. 1995
Demonstrates string compactifications that yield the standard-model gauge group and low-energy supersymmetry.
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M. Cicoli, Iñaki García Etxebarria, F. Quevedo, A. Schachner, P. Shukla, R. Valandro. The Standard Model quiver in de Sitter string compactifications. 2021. https://doi.org/10.1007/JHEP08(2021)109
Shows how string theory geometries reduce to the Left-Right symmetric model and the MSSM as the low energy spectrum.
F. Marchesano, G. Shiu, Timo Weigand. The Standard Model from String Theory: What Have We Learned?. 2024. https://doi.org/10.1146/annurev-nucl-102622-012235
Reviews how string theory compactifications reproduce the features and gauge sector of the Standard Model.
A. Constantin, Cristofero S. Fraser-Taliente, T. R. Harvey, A. Lukas, B. Ovrut. Computation of Quark Masses from String Theory. 2024. https://doi.org/10.1016/j.nuclphysb.2024.116778
Computes physical Yukawa couplings in string compactifications whose low-energy spectrum precisely matches the MSSM.
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