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Poincar\'e gauge theories provide an approach to gravity based on the gauging of the Poincar\'e group, whose homogeneous part generates curvature while the translational sector gives rise to torsion.
1901
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1901
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H.-J. Yo and J. M. Nester, Hamiltonian analysis of Poincare gauge theory: Higher spin modes , Int. J. Mod. Phys. D11
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I. L. Shapiro, Physical aspects of the space-time torsion , Phys. Rept. 357
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D.-C. Chern, J. M. Nester and H.-J. Yo, Positive energy test of Poincare gauge theory , Int. J. Mod. Phys. A7
2014
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2015
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2015
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2015
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2003
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J. Khoury and A. Weltman, Chameleon fields: Awaiting surprises for tests of gravity in space , Phys. Rev. Lett. 93
2004
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2008
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2008
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2009
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2009
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J. Beltran Jimenez and A. L. Maroto, Viability of vector-tensor theories of gravity , JCAP 0902
2009
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2016
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2016
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2016
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2016
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2016
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D. J. E. Marsh, Axion Cosmology , Phys. Rept. 643
2016
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Nuclear Safety Institute of the Russian Academy of Sciences, Nauka, 2017
V. N. Ponomarev, A. Barvinsky and Y. Obukhov, Gauge approach and quantization methods in gravity theory · 2017
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2017
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2017
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2017
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2017
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Y. N. Obukhov, Poincaré gauge gravity: An overview , Int. J. Geom. Meth. Mod. Phys. 15
2018
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2018
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J. Beltrán Jiménez, L. Heisenberg and T. Koivisto, Coincident General Relativity , Phys. Rev. D98
2018
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A. Conroy and T. Koivisto, The spectrum of symmetric teleparallel gravity , Eur. Phys. J. C78
2018
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J. Beltrán Jiménez, L. Heisenberg and T. S. Koivisto, Teleparallel Palatini theories , JCAP 1808
2018
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2019
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2019
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2019
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R. Rauch and H. T. Nieh, Birkhoff’s Theorem for General Riemann-Cartan Type R + R 2 R+R^{2} Theories of Gravity , Phys. Rev. D24
2029
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H.-J. Yo and J. M. Nester, Dynamic Scalar Torsion and an Oscillating Universe , Mod. Phys. Lett. A22
2069
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