A two-target setup in pp collisions can create tagged hyperon beams with known kinematics to enable precise measurements of hyperon-nucleon interactions and address the hyperon puzzle in neutron stars.
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A Core-Corona model with field-theoretic vortical polarization computes the excitation function of global Lambda polarization in heavy-ion collisions and predicts a robust maximum near 3 GeV.
An overview of the contact interaction model shows it describes the mass spectrum and form factors of forty mesons and their diquark partners with comparisons to lattice QCD and other approaches.
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Unraveling the Hyperon Puzzle in Neutron Stars via Novel, High-Precision Hyperon Factories
A two-target setup in pp collisions can create tagged hyperon beams with known kinematics to enable precise measurements of hyperon-nucleon interactions and address the hyperon puzzle in neutron stars.
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Excitation function for global \Lambda polarization in relativistic heavy ion collisions with the Core Corona model
A Core-Corona model with field-theoretic vortical polarization computes the excitation function of global Lambda polarization in heavy-ion collisions and predicts a robust maximum near 3 GeV.
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Symmetry Preserving Contact Interaction Approaches: An Overview of Meson and Diquark Form Factors
An overview of the contact interaction model shows it describes the mass spectrum and form factors of forty mesons and their diquark partners with comparisons to lattice QCD and other approaches.