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The unequal mass sunrise integral expressed through iterated integrals on $\overline{\mathcal M}_{1,3}$

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arxiv 1907.01251 v2 pith:NWPZNROG submitted 2019-07-02 hep-th hep-phmath-phmath.MP

classification hep-thhep-phmath-phmath.MP
keywords integralsintegraliteratedmathcalsunriseunequalmassmasses
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We solve the two-loop sunrise integral with unequal masses systematically to all orders in the dimensional regularisation parameter $\varepsilon$. In order to do so, we transform the system of differential equations for the master integrals to an $\varepsilon$-form. The sunrise integral with unequal masses depends on three kinematical variables. We perform a change of variables to standard coordinates on the moduli space ${\mathcal M}_{1,3}$ of a genus one Riemann surface with three marked points. This gives us the solution as iterated integrals on $\overline{\mathcal M}_{1,3}$. On the hypersurface $\tau=\mbox{const}$ our result reduces to elliptic polylogarithms. In the equal mass case our result reduces to iterated integrals of modular forms.

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    Presents epsilon-factorised master integrals, boundary values, and numerical routines for the planar and non-planar electroweak double-box families relevant to NNLO Moller scattering.

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