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On the Classification of N-extended Supersymmetric Quantum Mechanical Systems

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arxiv hep-th/0010135 v1 pith:XJWZOIFG submitted 2000-10-17 hep-th

classification hep-th
keywords classificationspindimensiondimensionalityextendedgamma-matricesirreduciblemultiplet
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In this paper some properties of the irreducible multiplets of representation for the N = (p, q) - extended supersymmetry in one dimension are discussed. Essentially two results are here presented. At first a peculiar property of the one dimension is exhibited, namely that any multiplet containing 2d (d bosonic and d fermionic) particles in M different spin states, is equivalent to a (d,d) multiplet of just 2 spin states (all bosons and all fermions being grouped in the same spin). Later, it is shown that the classification of all multiplets of this kind carrying an irreducible representation of the N - extended supersymmetry is in one-to-one correspondence with the classification of real-valued Clifford Gamma-matrices of Weyl type. In particular, p+q is mapped into D, the space-time dimensionality, while 2d is determined to be the dimensionality of the corresponding Gamma-matrices. The implications of these results to the theory of spinning particles are analyzed.

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  1. N=8 superconformal mechanics: direct construction

    hep-th 2024-11 conditional novelty 6.0 of 10

    Explicit supercharges and Hamiltonians are constructed for all N=8 superconformal mechanics variants associated with osp(8|2), F(4), osp(4*|4), and su(1,1|4).

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