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- W2911022111 endingPage "302" @default.
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- W2911022111 abstract "Local, manifestly dual-conformally invariant loop integrands are now known for all finite quantities associated with observables in planar, maximally supersymmetric Yang-Mills theory through three loops. These representations, however, are not infrared-finite term by term and therefore require regularization; and even using a regulator consistent with dual-conformal invariance, ordinary methods of loop integration would naively obscure this symmetry. In this work, we show how any planar loop integral through at least two loops can be systematically regulated and evaluated directly in terms of strictly finite, manifestly dual-conformal Feynman-parameter integrals. We apply these methods to the case of the two-loop ratio and remainder functions for six particles, reproducing the known results in terms of individually regulated local loop integrals, and we comment on some of the novelties that arise for this regularization scheme not previously seen at one loop." @default.
- W2911022111 created "2019-01-25" @default.
- W2911022111 creator A5014587680 @default.
- W2911022111 creator A5019018113 @default.
- W2911022111 creator A5072534737 @default.
- W2911022111 date "2019-05-01" @default.
- W2911022111 modified "2023-09-23" @default.
- W2911022111 title "Manifestly dual-conformal loop integration" @default.
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- W2911022111 doi "https://doi.org/10.1016/j.nuclphysb.2019.03.022" @default.
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