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20242026
most citedAmplitudes and partial wave unitarity bounds

2 citations · 2 across the 1 of their papers we have counts for

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7 papers

hep-ph20262 cited

Amplitudes and partial wave unitarity bounds

Luigi C. Bresciani, Gabriele Levati, Paride Paradisi

We develop a formalism, based on spinor-helicity techniques, to generalize the formulation of partial wave unitarity bounds. We discuss unitarity bounds for (with $N,M \g…

hep-ph2026

Unitarity bounds and sum rules in the SMEFT

Luigi C. Bresciani, Paride Paradisi, Andrea Sainaghi

We present a comprehensive reassessment of perturbative unitarity bounds in the dimension-six Standard Model Effective Field Theory, exploiting a new formalism based on spinor-heli…

hep-ph2025

Anomalous Dimension of a General Effective Gauge Theory II: Fermionic Sector

Jason Aebischer, Luigi C. Bresciani, Nudzeim Selimovic

The complete set of one-loop anomalous dimensions for general Effective Field Theories (EFTs) is derived using on-shell methods. Combined with previous findings for the bosonic sec…

hep-ph2025

Positivity and partial wave unitarity bounds on ALP theories via amplitude methods

Luigi C. Bresciani, Gabriele Levati, Paride Paradisi

We derive the complete set of partial wave unitarity bounds on the most general Axion-Like Particle (ALP) effective interactions up to dimension 8 in the limit of large center-of-m…

hep-ph2025

Renormalization of effective field theories via on-shell methods: the case of axion-like particles

Luigi C. Bresciani, Giacomo Brunello, Gabriele Levati +2

We consider the most general axion-like particle effective field theory, including both CP-odd and CP-even types of interactions, and evaluate the corresponding renormalization gro…

hep-ph2025

Anomalous Dimension of a General Effective Gauge Theory I: Bosonic Sector

Jason Aebischer, Luigi C. Bresciani, Nudzeim Selimovic

We classify the physical operators of the most general bosonic effective gauge theory up to dimension six using on-shell methods. Based on this classification, we compute the compl…