From the 1 of 6 linked papers with an AI index.
6 papers
Fourier Transforms of Color Glass Condensate Multi-Wilson-Line Correlators via Filon Quadrature
Haowu Duan, Si-Wei Dai, Cong Yi +1
Calculating cross sections in the Color Glass Condensate effective theory requires Fourier transforms of multi-Wilson-line correlators from transverse coordinate space to transvers…
Unbiased Data-Driven Determination of the Nuclear Dipole Amplitude in the Color Glass Condensate
Si-Wei Dai, Haowu Duan, Long-Gang Pang +4
The paper presents a physics‑informed neural‑network method that embeds the Balitsky‑Kovchegov evolution to extract the nuclear gluon dipole amplitude directly from data, yielding…
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…
Entanglement Enabled Intensity Interferometry in ultrarelativistic ultraperipheral nuclear collisions
James Daniel Brandenburg, Haowu Duan, Zhoudunming Tu +2
An important tool in studying the sub-femtoscale spacetime structure of matter in ultrarelativistic heavy-ion collisions is Hanbury-Brown-Twiss (HBT) intensity interferometry of id…
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…
Born-Oppenheimer Renormalization group for High Energy Scattering: the Setup and the Wave Function
Haowu Duan, Alex Kovner, Michael Lublinsky
We develop an approach to QCD evolution based on the sequential Born-Oppenheimer approximations that include higher and higher frequency modes as the evolution parameter is increas…