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Beyond scalar, vector and tensor harmonics in maximally symmetric three-dimensional spaces

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arxiv 1909.13687 v1 pith:6ZCBSHQX submitted 2019-09-30 gr-qc

Beyond scalar, vector and tensor harmonics in maximally symmetric three-dimensional spaces

classification gr-qc
keywords harmonicsformalismradialspacestensorangularcollectdependence
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a comprehensive construction of scalar, vector and tensor harmonics on maximally symmetric three-dimensional spaces. Our formalism relies on the introduction of spin-weighted spherical harmonics and a generalized helicity basis which, together, are ideal tools to decompose harmonics into their radial and angular dependencies. We provide a thorough and self-contained set of expressions and relations for these harmonics. Being general, our formalism also allows to build harmonics of higher tensor type by recursion among radial functions, and we collect the complete set of recursive relations which can be used. While the formalism is readily adapted to computation of CMB transfer functions, we also collect explicit forms of the radial harmonics which are needed for other cosmological observables. Finally, we show that in curved spaces, normal modes cannot be factorized into a local angular dependence and a unit norm function encoding the orbital dependence of the harmonics, contrary to previous statements in the literature.

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