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Dirac Functional Determinants in Terms of the Eta Invariant and the Noncommutative Residue

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arxiv hep-th/9910038 v2 pith:VD32I4AN submitted 1999-10-05 hep-th math-phmath.DGmath.MP

Dirac Functional Determinants in Terms of the Eta Invariant and the Noncommutative Residue

classification hep-th math-phmath.DGmath.MP
keywords diractermsambiguityanomalyassociatedcalculationscasedeterminant
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The zeta and eta-functions associated with massless and massive Dirac operators, in a D-dimensional (D odd or even) manifold without boundary, are rigorously constructed. Several mathematical subtleties involved in this process are stressed, as the intrisic ambiguity present in the definition of the associated fermion functional determinant in the massless case and, also, the unavoidable presence (in some situations) of a multiplicative anomaly, that can be conveniently expressed in terms of the noncommutative residue. The ambiguity is here seen to disappear in the massive case, giving rise to a phase of the Dirac determinant - that agrees with very recent calculations appeared in the mathematical literature - and to a multiplicative anomaly - also in agreement with other calculations, in the coinciding situations. After explicit, nontrivial resummation of the mass series expansions involving zeta and eta functions, the results are expressed in terms of quite simple formulas.

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