Nonperturbative strange-quark sea from lattice QCD, light-front holography, and meson-baryon fluctuation models
Raza Sabbir Sufian, Tianbo Liu, Guy F. de T\'eramond, Hans G\"unter, Dosch, Stanley J. Brodsky, Alexandre Deur, Mohammad T. Islam, Bo-Qiang Ma

TL;DR
This paper investigates the nonperturbative strange-antistrange asymmetry in the nucleon using lattice QCD, light-front holography, and meson-baryon fluctuation models, revealing insights into the distribution functions and form factors.
Contribution
It introduces a novel nonperturbative model based on light-front holography that explains the strange-antistrange asymmetry and incorporates quark masses consistently.
Findings
Lattice QCD predicts a negative $s(x)-ar{s}(x)$ at small-$x$ and positive at large-$x$.
The holographic model reproduces the lattice results and describes the asymmetry.
Both models align with experimental and lattice data on strange quark distributions.
Abstract
We demonstrate that a nonzero strangeness contribution to the spacelike electromagnetic form factor of the nucleon is evidence for a strange-antistrange asymmetry in the nucleon's light-front wave function, thus implying different nonperturbative contributions to the strange and antistrange quark distribution functions. A recent lattice QCD calculation of the nucleon strange quark form factor predicts that the strange quark distribution is more centralized in coordinate space than the antistrange quark distribution, and thus the strange quark distribution is more spread out in light-front momentum space. We show that the lattice prediction implies that the difference between the strange and antistrange parton distribution functions, , is negative at small- and positive at large-. We also evaluate the strange quark form factor and using a…
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