In this manuscript, we report the outcome of the topical workshop: paving the way to alternative NNLO strategies (https://indico.ific.uv.es/e/WorkStop-ThinkStart_3.0), by presenting a discussion about different frameworks to perform precise higher-order computations for high-energy physics. These approaches implement novel strategies to deal with infrared and ultraviolet singularities in quantum field theories. A special emphasis is devoted to the local cancellation of these singularities, which can enhance the efficiency of computations and lead to discover novel mathematical properties in quantum field theories.
May the four be with you: novel IR-subtraction methods to tackle NNLO calculations / Torres Bobadilla, W. J.; Sborlini, G. F. R.; Banerjee, P.; Catani, S.; Cherchiglia, A. L.; Cieri, L.; Dhani, P. K.; Driencourt-Mangin, F.; Engel, T.; Ferrera, G.; Gnendiger, C.; Hernandez-Pinto, R. J.; Hiller, B.; Pelliccioli, G.; Pires, J.; Pittau, R.; Rocco, M.; Rodrigo, G.; Sampaio, M.; Signer, A.; Signorile-Signorile, C.; Stockinger, D.; Tramontano, F.; Ulrich, Y.. - In: THE EUROPEAN PHYSICAL JOURNAL. C, PARTICLES AND FIELDS. - ISSN 1434-6044. - 81:3(2021). [10.1140/epjc/s10052-021-08996-y]
May the four be with you: novel IR-subtraction methods to tackle NNLO calculations
Tramontano F.;
2021
Abstract
In this manuscript, we report the outcome of the topical workshop: paving the way to alternative NNLO strategies (https://indico.ific.uv.es/e/WorkStop-ThinkStart_3.0), by presenting a discussion about different frameworks to perform precise higher-order computations for high-energy physics. These approaches implement novel strategies to deal with infrared and ultraviolet singularities in quantum field theories. A special emphasis is devoted to the local cancellation of these singularities, which can enhance the efficiency of computations and lead to discover novel mathematical properties in quantum field theories.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.