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Cosmological constant can always be considered as the on-shell value of a top form in gravitational theories.
A. Einstein, “Kosmologische Betrachtungen zur allgemeinen Relativitätstheorie,” Sitzungsberichte der Königlich Preußischen Akademie der Wissenschaften (Berlin), Seite 142-152, (1917)
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A. Aurilia, H. Nicolai and P. K. Townsend, “Hidden Constants: The Theta Parameter of QCD and the Cosmological Constant of N=8 Supergravity,” Nucl. Phys. B
1980
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M. J. Duff and P. van Nieuwenhuizen, “Quantum Inequivalence of Different Field Representations,” Phys. Lett
1980
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S. W. Hawking, “The Cosmological Constant Is Probably Zero,” Phys. Lett
1984
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M. Henneaux and C. Teitelboim, “The Cosmological Constant As A Canonical Variable,” Phys. Lett
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C. Teitelboim, “The Cosmological Constant As A Thermodynamic Black Hole Parameter,” Phys. Lett
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J. D. Brown and M. Henneaux, “Central Charges in the Canonical Realization of Asymptotic Symmetries: An Example from Three-Dimensional Gravity,” Commun. Math. Phys
1986
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A. Ashtekar, L. Bombelli, and R. Koul, “Phase space formulation of general relativity without a 3+1 splitting”, Lect. Notes Phys.,
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C. Crnkovic and E. Witten, “Covariant Description Of Canonical Formalism In Geometrical Theories”, In Hawking, S.W. (ed.), Israel, W. (ed.): Three hundred years of gravitation, 676-684, (1987)
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M. Henneaux and C. Teitelboim, “The Cosmological Constant and General Covariance,” Phys. Lett. B
1989
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M. Duff, “The Cosmological Constant Is Possibly Zero, but the Proof Is Probably Wrong”, Phys.Lett. B226 (1989) 36
1989
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M. J. Duncan and L. G. Jensen, “Four Forms and the Vanishing of the Cosmological Constant,” Nucl. Phys. B
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J. Lee and R. M. Wald, “Local symmetries and constraints”, J. Math. Phys.,
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A. Ashtekar, L. Bombelli, and O. Reula, “The covariant phase space of asymptotically flat gravitational fields”, In M. Francaviglia (ed.), Mechanics, Analysis and Geometry: 200 Years after Lagrange, 417-450, (1990)
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R. M. Wald, “Black hole entropy is the Noether charge”, Phys. Rev. D,
1993
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V. Iyer and R. M. Wald, “Some properties of Noether charge and a proposal for dynamical black hole entropy”, Phys. Rev. D,
1994
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J. D. E. Creighton and R. B. Mann, “Quasilocal thermodynamics of dilaton gravity coupled to gauge fields,” Phys. Rev. D
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R. Bousso and J. Polchinski, “Quantization of four form fluxes and dynamical neutralization of the cosmological constant,” JHEP
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2011
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2014
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M. M. Caldarelli, G. Cognola and D. Klemm, “Thermodynamics of Kerr-Newman-AdS black holes and conformal field theories,” Class. Quant. Grav
2000
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R. M. Wald and A. Zoupas, “A General definition of ’conserved quantities’ in general relativity and other theories of gravity”, Phys. Rev. D,
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G. Barnich and F. Brandt, “Covariant theory of asymptotic symmetries, conservation laws and central charges”, Nucl. Phys. B,
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G. Barnich, “Boundary charges in gauge theories: Using Stokes theorem in the bulk”, Class. Quant. Grav.,
2003
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Y. Sekiwa, “Thermodynamics of de Sitter black holes: Thermal cosmological constant,” Phys. Rev. D
2006
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2008
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2015
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