Rotational symmetry restoration in even-even nuclei generates an effective collision geometry that acts as a low-pass filter exponentially suppressing deformation modes, recovering the classical rigid-rotor limit only for large angular-momentum fluctuations.
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5 Pith papers cite this work. Polarity classification is still indexing.
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2026 5verdicts
UNVERDICTED 5representative citing papers
Bayesian global fit to Xe-Xe and Pb-Pb LHC data infers nearly maximal triaxiality for the 129Xe ground state and extracts two- and three-particle correlations.
Quantum fermionic effects explain nearly all effective quadrupole deformation in light/spherical nuclei but less than 10% in heavy deformed nuclei, showing the classical rigid-rotor picture is insufficient for quantitative work.
Ellipsoidal nuclei maintain a fixed orientation for a finite time of order 10^{-23} seconds as a consequence of the time-dependent Schrödinger equation and known rotational features.
Light-ion collisions at the LHC provide evidence of quark-gluon plasma formation in small systems, bridging proton-proton and heavy-ion regimes.
citing papers explorer
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Quantum Symmetry Restoration and Emergent Effective Deformation in Relativistic Heavy-Ion Collisions
Rotational symmetry restoration in even-even nuclei generates an effective collision geometry that acts as a low-pass filter exponentially suppressing deformation modes, recovering the classical rigid-rotor limit only for large angular-momentum fluctuations.
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Yoctosecond imaging of the ground state of $^{129}$Xe at the Large Hadron Collider
Bayesian global fit to Xe-Xe and Pb-Pb LHC data infers nearly maximal triaxiality for the 129Xe ground state and extracts two- and three-particle correlations.
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Quantum effects in the quadrupole rotor picture of ultra-relativistic ion-ion collisions
Quantum fermionic effects explain nearly all effective quadrupole deformation in light/spherical nuclei but less than 10% in heavy deformed nuclei, showing the classical rigid-rotor picture is insufficient for quantitative work.
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How long can an atomic nucleus remain standing ? -- a fundamental quantum question
Ellipsoidal nuclei maintain a fixed orientation for a finite time of order 10^{-23} seconds as a consequence of the time-dependent Schrödinger equation and known rotational features.
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Light-Ion Collisions: Bridging Small and Large QCD Systems
Light-ion collisions at the LHC provide evidence of quark-gluon plasma formation in small systems, bridging proton-proton and heavy-ion regimes.