
Abstract We give the superalgebra of N = 2 chiral (and antichiral) quantum superfields realized as a subalgebra of the quantum supergroup SL q (4|2). The multiplication law in the quantum supergroup induces a coaction on the set of chiral superfields. We also realize the quantum deformation of the chiral Minkowski superspace as a quantum principal bundle.
High Energy Physics - Theory, Complex supergeometry, quantum groups, Minkowski space, Supermanifolds and graded manifolds, FOS: Physical sciences, Supervarieties, supergeometry, High Energy Physics - Theory (hep-th), 32C11, 14A22, 14M30, 58A50, Mathematics - Quantum Algebra, Supergeometry. Minkowski space, FOS: Mathematics, Quantum Algebra (math.QA), supersymmetry, noncommutative geometry, Quantum groups and related algebraic methods applied to problems in quantum theory
High Energy Physics - Theory, Complex supergeometry, quantum groups, Minkowski space, Supermanifolds and graded manifolds, FOS: Physical sciences, Supervarieties, supergeometry, High Energy Physics - Theory (hep-th), 32C11, 14A22, 14M30, 58A50, Mathematics - Quantum Algebra, Supergeometry. Minkowski space, FOS: Mathematics, Quantum Algebra (math.QA), supersymmetry, noncommutative geometry, Quantum groups and related algebraic methods applied to problems in quantum theory
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