
arXiv: 1001.4904
A degree 1 non-negative graded super manifold equipped with a degree 1 vector field Q satisfying [Q, Q]=1, namely a so-called NQ-1 manifold is, in plain differential geometry language, a Lie algebroid. We introduce a notion of fibration for such super manifols, that essentially involves a complete Ehresmann connection. As it is the case for Lie algebras, such fibrations turn out not to be just locally trivial products. We also define homotopy groups and prove the expected long exact sequence associated to a fibration. In particular, Crainic and Fernandes's obstruction to the integrability of Lie algebroids is interpreted as the image of a transgression map in this long exact sequence.
28 pages, 1 figure
Homotopy groups, Homotopy theory and fundamental groups in algebraic geometry, Mathematics - Differential Geometry, Mathematics(all), Representation up to homotopy, Crainic and Fernandes's obstruction, 53D17 (Primary), 22A22, 14F35 (Secondary), Integration, FOS: Physical sciences, Lie algebroids, Mathematical Physics (math-ph), Extensions, Fibrations, Poisson manifolds; Poisson groupoids and algebroids, Ehresmann connection, Differential Geometry (math.DG), homotopy groups, FOS: Mathematics, fibrations, Mathematical Physics, Topological groupoids (including differentiable and Lie groupoids)
Homotopy groups, Homotopy theory and fundamental groups in algebraic geometry, Mathematics - Differential Geometry, Mathematics(all), Representation up to homotopy, Crainic and Fernandes's obstruction, 53D17 (Primary), 22A22, 14F35 (Secondary), Integration, FOS: Physical sciences, Lie algebroids, Mathematical Physics (math-ph), Extensions, Fibrations, Poisson manifolds; Poisson groupoids and algebroids, Ehresmann connection, Differential Geometry (math.DG), homotopy groups, FOS: Mathematics, fibrations, Mathematical Physics, Topological groupoids (including differentiable and Lie groupoids)
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