Scherk-Schwarz breaking yields a Dirac gravitino whose mixing lacks a local N=1 superspace realization in minimal supergravity and whose matter couplings produce standard scalar thresholds plus UV-dependent Dirac fermion masses.
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Weyl gauge theory of gravity is revived as the only anomaly-free gauge theory of spacetime symmetry with a physical gauge boson, exact geometric interpretation, all scales of geometric origin, and it generates the Einstein-Hilbert action plus positive cosmological constant upon spontaneous breaking,
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(Pseudo-)Dirac Gravitinos
Scherk-Schwarz breaking yields a Dirac gravitino whose mixing lacks a local N=1 superspace realization in minimal supergravity and whose matter couplings produce standard scalar thresholds plus UV-dependent Dirac fermion masses.
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The fall and the rise of Weyl gauge theory
Weyl gauge theory of gravity is revived as the only anomaly-free gauge theory of spacetime symmetry with a physical gauge boson, exact geometric interpretation, all scales of geometric origin, and it generates the Einstein-Hilbert action plus positive cosmological constant upon spontaneous breaking,