2003
DOI: 10.1088/1126-6708/2003/05/074
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Graded Poisson-sigma models and dilaton-deformed 2D supergravity algebra

Abstract: Fermionic extensions of generic 2d gravity theories obtained from the graded Poisson-Sigma model (gPSM) approach show a large degree of ambiguity. In addition, obstructions may reduce the allowed range of fields as given by the bosonic theory, or even prohibit any extension in certain cases. In our present work we relate the finite W-algebras inherent in the gPSM algebra of constraints to algebras which can be interpreted as supergravities in the usual sense (Neuveu-Schwarz or Ramond algebras resp.), deformed … Show more

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Cited by 18 publications
(53 citation statements)
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References 52 publications
(155 reference statements)
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“…Though the appearance of fermions in both, geometry and matter part, lead to some technical complications the final result is seen to retain the structure already found in the bosonic case [33,6,7,36]. For the purely geometrical part of the action the result of this analysis has been presented already in [24]. Nevertheless, a detailed formulation is given.…”
Section: Hamiltonian Analysismentioning
confidence: 67%
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“…Though the appearance of fermions in both, geometry and matter part, lead to some technical complications the final result is seen to retain the structure already found in the bosonic case [33,6,7,36]. For the purely geometrical part of the action the result of this analysis has been presented already in [24]. Nevertheless, a detailed formulation is given.…”
Section: Hamiltonian Analysismentioning
confidence: 67%
“…To this end the non-linear symmetry (2.3), which is closed on-shell only, is-in a first steprelated to the more convenient (off-shell closed) algebra of Hamiltonian constraints G I = ∂ 1 X I + P IJ (X)A 1J discussed in detail in Section 3. The Hamiltonian obtained from (2.1) is a linear combination of these constraints [33,6,24]:…”
Section: Minimal Field Supergravitymentioning
confidence: 99%
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“…A novel feature is that (5) contains terms at most quadratic in X a , whereas in the traditional approach arbitrary coupling to X a X b η ab is allowed since η ab is introduced there as an external structure. This is interesting by itself because supergravity imposes a similar restriction to quadratic coupling [15], but we shall not pursue this issue any further here. As mentioned before the choice (7) was made for simplicity.…”
Section: Discussionmentioning
confidence: 99%
“…The relation of the Birkhoff theorem to two-dimensional space-times is worked out in [67], [68], [69], [70], [71], [72], [73], [74], [75], [76], [77], [78], [79], [80], [81], [82], and [83]. For related work on black holes in Palatini gravity see e.g.…”
Section: Introductionmentioning
confidence: 99%