Alpha clustering in 16O and 20Ne suppresses initial spin fluctuations in relativistic collisions, with a scaled ratio of fluctuations between the two systems proposed as a probe of cluster geometry.
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Second-order relativistic viscous hydrodynamics including thermal vorticity and evolving magnetic fields yields global Lambda hyperon polarization in Pb+Pb collisions at 2.76 and 5.02 TeV that qualitatively matches ALICE measurements.
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Initial spin fluctuations as a probe of cluster spin structure in $^{16}\mathrm{O}$ and $^{20}\mathrm{Ne}$ nuclei
Alpha clustering in 16O and 20Ne suppresses initial spin fluctuations in relativistic collisions, with a scaled ratio of fluctuations between the two systems proposed as a probe of cluster geometry.
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Global polarization of $\Lambda$ hyperons in hot QCD matter at TeV energies
Second-order relativistic viscous hydrodynamics including thermal vorticity and evolving magnetic fields yields global Lambda hyperon polarization in Pb+Pb collisions at 2.76 and 5.02 TeV that qualitatively matches ALICE measurements.