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Classical 6j-symbols and the tetrahedron

Mathematical Physics 2014-11-11 v2 High Energy Physics - Theory math.MP Quantum Algebra

Abstract

A classical 6j-symbol is a real number which can be associated to a labelling of the six edges of a tetrahedron by irreducible representations of SU(2). This abstract association is traditionally used simply to express the symmetry of the 6j-symbol, which is a purely algebraic object; however, it has a deeper geometric significance. Ponzano and Regge, expanding on work of Wigner, gave a striking (but unproved) asymptotic formula relating the value of the 6j-symbol, when the dimensions of the representations are large, to the volume of an honest Euclidean tetrahedron whose edge lengths are these dimensions. The goal of this paper is to prove and explain this formula by using geometric quantization. A surprising spin-off is that a generic Euclidean tetrahedron gives rise to a family of twelve scissors-congruent but non-congruent tetrahedra.

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Cite

@article{arxiv.math-ph/9812013,
  title  = {Classical 6j-symbols and the tetrahedron},
  author = {Justin Roberts},
  journal= {arXiv preprint arXiv:math-ph/9812013},
  year   = {2014}
}

Comments

46 pages. Published copy, also available at http://www.maths.warwick.ac.uk/gt/GTVol3/paper2.abs.html