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Scattering amplitudes from finite-volume spectral functions

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arxiv 1903.11735 v1 pith:XZHH7Q7I submitted 2019-03-28 hep-lat

classification hep-lat
keywords functionsspectralfinite-volumeamplitudesepsilonscatteringsmearedarbitrary
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A novel proposal is outlined to determine scattering amplitudes from finite-volume spectral functions. The method requires extracting smeared spectral functions from finite-volume Euclidean correlation functions, with a particular complex smearing kernel of width $\epsilon$ which implements the standard $i\epsilon$-prescription. In the $L \to \infty$ limit these smeared spectral functions are therefore equivalent to Minkowskian correlators with a specific time ordering to which a modified LSZ reduction formalism can be applied. The approach is presented for general $m \to n$ scattering amplitudes (above arbitrary inelastic thresholds) for a single-species real scalar field, although generalization to arbitrary spins and multiple coupled channels is likely straightforward. Processes mediated by the single insertion of an external current are also considered. Numerical determination of the finite-volume smeared spectral function is discussed briefly and the interplay between the finite volume, Euclidean signature, and time-ordered $i\epsilon$-prescription is illustrated perturbatively in a toy example.

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Cited by 3 Pith papers

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