In recent years, there have been significant advancements in hadron structure through the use of lattice QCD. These advancements include improvements in hadron charges, form factors, and moments by eliminating lattice artifacts with the continuum-physical limit. Moreover, a breakthrough has been made in calculating the Bjorken-x dependence of parton distribution functions (PDFs) using large-momentum effective theory in lattice QCD, leading to direct calculations of Bjorken-x dependent structure.
In recent years, there have been many advances in the hadron structure using lattice QCD. There have also been improvements in hadron charges, form factors and moments, with the continuum-physical limit being taken, removing all lattice artifacts. There was a breakthrough in calculating the Bjorken-x dependence of PDFs in lattice QCD by using large-momentum effective theory and similar frameworks. This breakthrough has led to the emergence and rapid development of direct calculations of Bjorken-x dependent structure. In this talk, I will review recent progress made in lattice QCD and future challenges.
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