activity
20242026
collaborators

7 papers

hep-ph2026

Running coupling effects in the anti-collinear resummation in high energy evolution

Alex Kovner, Michael Lublinsky, Maxim Nefedov +1

We study the effects of the running of the QCD coupling on the anti-collinear resummation in JIMWLK evolution in the linear (BFKL) regime. We determine the appropriate scale choice…

hep-th2026

Chiral Plasma under Strong Magnetic Fields: A Holographic Analysis of Transport Phenomena

Michael Lublinsky, Hadas Tzarfati

Chiral plasma appears in several areas of physics, historically starting from primordial plasma in the early Universe, then in quark-gluon plasma produced in heavy ion collisions,…

hep-ph2026

Anti-collinear resummation in JIMWLK evolution in the linear regime

Alex Kovner, Michael Lublinsky, Maxim Nefedov +1

The recently-proposed resummation procedure for anti-collinear logarithms in the JIMWLK kernel~\cite{Kovner:2023vsy} is studied in the linear (BFKL) regime in the fixed-coupling ap…

hep-th2025

Sakai-Sugimoto Model in an Off-Shell: Chiral Lagrangian to All Orders

Michael Lublinsky, Timofey Solomko

The Sakai-Sugimoto holographic model is famous for implementing the approximate chiral symmetry of QCD and reproducing the Chiral Lagrangian in a top-down approach. In this manuscr…

hep-ph2024

Born-Oppenheimer Renormalization group for High Energy Scattering: the Modified BFKL, or where did it all go?

Haowu Duan, Alex Kovner, Michael Lublinsky

We continue exploring the Born-Oppenheimer renormalization group generating evolution in frequency of physical observables. In this paper we study the evolution of the total cross…

hep-ph2024

Born-Oppenheimer Renormalization group for High Energy Scattering: CSS, DGLAP and all that

Haowu Duan, Alex Kovner, Michael Lublinsky

In \cite{one}, we have introduced the Born-Oppenheimer (BO) renormalization group approach to high energy hadronic collisions and derived the BO approximation for the light cone wa…