6 papers
A Systematic Approach to Finite Multiloop Feynman Integrals
Prasanna K. Dhani, Konstantinos Pyretzidis, Selomit RamÃrez-Uribe +4
Finite Feynman integrals have been advocated as the optimal components for constructing a basis of master integrals in multiloop calculations, due to their improved analytic and nu…
Transverse-momentum resummation at mixed QCDQED NNLL accuracy for Z boson production at hadron colliders
Andrea Autieri, Stefano Camarda, Leandro Cieri +2
We consider the transverse momentum () distribution of neutral charged bosons at hadron colliders. We perform the resummation of the logarithmically-enhanced effects due to si…
Analysis of symmetries in the Causal Loop-Tree Duality representations
Irene Lopez Imaz, German Sborlini
Unveiling hidden symmetries within Feynman diagrams is crucial for achieving more efficient computations in high-energy physics. In this paper, we study the symmetries underlying t…
The glue that binds us all -- Latin America and the Electron-Ion Collider
A. C. Aguilar, A. Bashir, J. J. Cobos-MartÃnez +23
The Electron-Ion Collider, a next generation electron-hadron and electron-nuclei scattering facility, will be built at Brookhaven National Laboratory. The wealth of new data will s…
Vacuum amplitudes and time-like causal unitary in the loop-tree duality
The LTD Collaboration, Selomit RamÃrez-Uribe, Andrés E. RenterÃa-Olivo +8
We present the first proof-of-concept application to decay processes at higher perturbative orders of LTD causal unitary, a novel methodology that exploits the causal properties of…
Rewording Theoretical Predictions at Colliders with Vacuum Amplitudes
Selomit RamÃrez-Uribe, Prasanna K. Dhani, German F. R. Sborlini +1
We propose multiloop vacuum amplitudes as the optimal building blocks for efficiently assembling theoretical predictions at high-energy colliders. This hypothesis is strongly suppo…