Speaker
Description
Almost all the known mass of the universe can be attributed to nucleons. Accurate knowledge of the nucleon structure in terms of the quark and gluon degrees of freedom is essential for precisely extracting standard model parameters, including those in the neutrino sector. This knowledge is also crucial for our eventual discovery of physics beyond the standard model in colliders, fixed target experiments, and cosmic ray detectors. Over the past few years, a better understanding of the complementarity between first-principles lattice QCD calculations and experimental measurements (e.g. at the LHC and the future EIC) has emerged. In this talk, I will review recent results on hadron structure, with a particular focus on nucleon structure, and discuss future prospects.