Torsion-induced four-fermion interactions modify effective masses and mixing parameters for Majorana neutrinos with sterile partners in matter.
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Torsion in spacetime causes matter and antimatter to have different dispersion relations and masses that grow with density, so antimatter is preferentially captured by primordial black holes, explaining the matter-antimatter asymmetry.
citing papers explorer
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Torsional four-fermion interaction for Majorana neutrinos
Torsion-induced four-fermion interactions modify effective masses and mixing parameters for Majorana neutrinos with sterile partners in matter.
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Spinors with torsion and matter$-$antimatter asymmetry
Torsion in spacetime causes matter and antimatter to have different dispersion relations and masses that grow with density, so antimatter is preferentially captured by primordial black holes, explaining the matter-antimatter asymmetry.