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The octonionically-induced ${\cal N}=7$ exceptional $G(3)$ superconformal quantum mechanics

High Energy Physics - Theory 2019-12-13 v1 Mathematical Physics math.MP

Abstract

Both the N=7{\cal N}=7 superconformal quantum mechanics possessing the exceptional G(3)G(3) Lie superalgebra as dynamical symmetry and its associated deformed oscillator with G(3)G(3) as spectrum-generating superalgebra are presented. This superconformal quantum mechanics, uniquely defined up to similarity transformations, is obtained via the octonionically-induced "quasi-nonassociative" method employed to derive the exceptional N=8{\cal N}=8 F(4)F(4) model. To construct the G(3)G(3) theories, the covariant embedding of the 77-dimensional representation of the Lie algebra g2g_2 within the 8×88\times 8 matrices spanning the Cl(0,7)Cl(0,7) Clifford algebra is derived. The Hilbert space of the G(3)G(3) deformed oscillator is given by a 1616-ple of square-integrable functions of a real space coordinate. The spectrum of the theory is computed.

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Cite

@article{arxiv.1912.05596,
  title  = {The octonionically-induced ${\cal N}=7$ exceptional $G(3)$ superconformal quantum mechanics},
  author = {Francesco Toppan},
  journal= {arXiv preprint arXiv:1912.05596},
  year   = {2019}
}

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17 pages