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Titlebook: Clifford Algebras and Spinor Structures; A Special Volume Ded Rafał Ablamowicz,Pertti Lounesto Book 1995 Springer Science+Business Media Do

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Some Clifford Algebra History a glimpse of the history of the subject, as we have found it. Albert Crumeyrolle’s treatment of spinor structures remains today a rich source of inspiration for both mathematicians and Physicists. We are deeply indebted to him for his illuminations. We found the historical development interesting a
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Finite Geometry, Dirac Groups and the Table of Real Clifford Algebras vector space over GF(2) = *#x007B;0, 1*#x007D; which comes equipped with a quadratic form . and associated alternating bilinear form .. Properties of the finite geometry over GF(2) of ... — in part familiar, in part less so — are given a rather full description, and a dictionary of translation into
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Crumeyrolle-Chevalley-Riesz Spinors and Covariancects of spinors and are thus elements in an algebra generated from a .. The resulting spinor algebra is structurally identical with the usual multivector Clifford algebra; functionally, the spinor algebra includes the multivector algebra as a subalgebra.
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Crumeyrolle’s Bivectors and Spinors in Clifford algebras, especially they do not exist in a canonical way in characteristic 2. However, there is a natural way to introduce bivectors in all other characteristics ≠ 2, because there is a one-to-one correspondence between quadratic forms and . bilinear forms..Crumeyrolle also emphasized
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Spinor Fields and Superfields as Equivalence Classes of Exterior Algebra Fieldserior algebra fields. We construct explicitly these spinors for Lorentzian manifolds and present superfields through the hyperbolic Clifford algebra bundle (some interesting results concerning to this structure are presented) and its associated real spinor bundle. We compare our spinor fields with C
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Chevalley-Crumeyrolle Spinors in McKane-Parisi-Sourlas Theoremused, in the framework of a supersymmetric (SUSY) algebraic valued field theory, to represent fermionic and bosonic interactions. This algebraic approach is compared with some other formulations of the problem.
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Spinors from a Differential Geometric Point of Vieword algebras, bilinear inner products on spinor space, and conjugate operations are defined in an intrinsic and compact manner. The relations with Cartan’s theory are established and some generalizations are discussed.
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