Complete integration-by-parts reductions of the non-planar hexagon-box via module intersections

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Abstract

We present the powerful module-intersection integration-by-parts (IBP) method, suitable for multi-loop and multi-scale Feynman integral reduction. Utilizing modern computational algebraic geometry techniques, this new method successfully trims traditional IBP systems dramatically to much simpler integral-relation systems on unitarity cuts. We demonstrate the power of this method by explicitly carrying out the complete analytic reduction of two-loop five-point non-planar hexagon-box integrals, with degree-four numerators, to a basis of 73 master integrals.

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Böhm, J., Georgoudis, A., Larsen, K. J., Schönemann, H., & Zhang, Y. (2018). Complete integration-by-parts reductions of the non-planar hexagon-box via module intersections. Journal of High Energy Physics, 2018(9). https://doi.org/10.1007/JHEP09(2018)024

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