A quantum framework for heavy-quark spin evolution in heavy-ion collisions yields analytic polarization solutions, fitted to ALICE D*+ data to extract depolarization strength and estimate Lambda_c polarization plus elliptic harmonics.
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In Cu+Au collisions, heavy-quark directed flow is an order of magnitude larger than charged-hadron flow and shows strong sensitivity to initial spatial distributions and temperature-dependent drag.
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Quantum spin dynamics of heavy quarks and polarization observables in relativistic heavy-ion collisions
A quantum framework for heavy-quark spin evolution in heavy-ion collisions yields analytic polarization solutions, fitted to ALICE D*+ data to extract depolarization strength and estimate Lambda_c polarization plus elliptic harmonics.
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Sensitivity of Heavy-Quark Dipolar Flow to its Initial Spatial Distributions in Cu+Au Collisions
In Cu+Au collisions, heavy-quark directed flow is an order of magnitude larger than charged-hadron flow and shows strong sensitivity to initial spatial distributions and temperature-dependent drag.