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General relativity can be unambiguously formulated with Lorentz, de Sitter and anti-de Sitter tangent groups, which determine the fermionic representations.
R. Utiyama, Invariant theoretical interpretation of interactions,
1956
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T. Kibble, Lorentz invariance and the gravitational field, J. Math. Phys. 2
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A. H. Chamseddine and P. West, Supergravity as a gauge theory of supersymmetry,
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S. MacDowell and F. Mansouri, Unified geometric theory of gravity and supergravity,
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Cited alongside, same era.
A. H. Chamseddine, Massive Supergravity from Spontaneously Breaking Orthosymplectic Gauge Symmetry,
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Cited alongside, same era.
J. Scherk, Extended supersymmetry and extended supergravity theories,
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Cited alongside, same era.
S. Weinberg, Generalized theories of gravity and supergravity in higher dimensions,
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Later among the works it cites.
A. H. Chamseddine and V. Mukhanov, Gravity with de Sitter and Unitary Tangent Groups,
2010
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