Distribution Functions of $\Lambda$ and $\Sigma^0$ Baryons
Distribution Functions of $\Lambda$ and $\Sigma^0$ Baryons
Treating baryons as quark + interacting-diquark bound states, a symmetry-preserving formulation of a vector$\,\times\,$vector contact interaction (SCI) is used to deliver an extensive, coherent set of predictions for $\Lambda, \Sigma^0$ baryon unpolarised and polarised distribution functions (DFs) -- valence, glue, and four-flavour separated sea -- and compare them with those of a like-structured nucleon. $\Lambda, \Sigma^0$ baryons are strangeness negative-one isospin partners within the SU$(3)$-flavour baryon octet. This makes such structural comparisons significant. The study reveals impacts of diquark correlations and SU$(3)$-flavour symmetry breaking on $\Lambda$, $\Sigma^0$ structure functions, some of which are significant. For instance, were it not for the presence of axialvector diquarks in the $\Sigma^0$ at the hadron scale, the $s$ quark could carry none of the $\Sigma^0$ spin. The discussion canvasses issues that include helicity retention in hard scattering processes; the sign and size of polarised gluon DFs; and the origin and decomposition of baryon spins. Interpreted judiciously, the SCI analysis delivers an insightful explanation of baryon structure as expressed in DFs.
Yang Yu、Peng Cheng、Hui-Yu Xing、Daniele Binosi、Craig D. Roberts
物理学
Yang Yu,Peng Cheng,Hui-Yu Xing,Daniele Binosi,Craig D. Roberts.Distribution Functions of $\Lambda$ and $\Sigma^0$ Baryons[EB/OL].(2025-05-15)[2025-06-23].https://arxiv.org/abs/2505.10663.点此复制
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