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Ans\"atze for Scattering Amplitudes from $p$-adic Numbers and Algebraic Geometry

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arxiv 2203.04269 v2 pith:CIK7C4WE submitted 2022-03-08 hep-th

classification hep-th
keywords coefficientsrationalsurfacesdivergencesgammasingularadicalgebraic
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Rational coefficients of special functions in scattering amplitudes are known to simplify on singular surfaces, often diverging less strongly than the na\"ive expectation. To systematically study these surfaces and rational functions on them, we employ tools from algebraic geometry. We show how the divergences of a rational function constrain its numerator to belong to symbolic powers of ideals associated to the singular surfaces. To study the divergences of the coefficients, we make use of $p$-adic numbers, closely related to finite fields. These allow us to perform numerical evaluations close to the singular surfaces in a stable manner and thereby characterize the divergences of the coefficients. We then use this information to construct low-dimensional Ans\"atze for the rational coefficients. As a proof-of-concept application of our algorithm, we reconstruct the two-loop $0 \rightarrow q\bar q\gamma\gamma\gamma$ pentagon-function coefficients with fewer than 1000 numerical evaluations.

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