Introduces an entanglement-based technique using Schmidt decompositions to isolate exclusive scattering channels in Matrix Product State simulations of quantum field theories, demonstrated for heavy particle detection in the 1D Ising model.
Adamet al.(ALICE), Enhanced production of multi- strange hadrons in high-multiplicity proton-proton col- lisions, Nature Phys.13, 535 (2017), arXiv:1606.07424 [nucl-ex]
4 Pith papers cite this work. Polarity classification is still indexing.
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Non-thermal production via late-decaying reheatons can achieve the observed dark matter density for sexaquarks by controlling branching fractions and coalescence probabilities, unlike thermal freeze-out which underproduces them by many orders of magnitude.
Multi-differential tests on Υ(nS) and ψ(2S)/J/ψ suppression in high-multiplicity pp collisions rule out standard hadronic and string models in favor of an early globally correlated partonic medium.
The equilibrated core in O+O collisions overtakes the nonequilibrium corona above midrapidity multiplicity of about 20, yet corona contributions persist in central events, making pure hydrodynamics inadequate.
citing papers explorer
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Exclusive Scattering Channels from Entanglement Structure in Real-Time Simulations
Introduces an entanglement-based technique using Schmidt decompositions to isolate exclusive scattering channels in Matrix Product State simulations of quantum field theories, demonstrated for heavy particle detection in the 1D Ising model.
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Non-Thermal Production of Sexaquark Dark Matter
Non-thermal production via late-decaying reheatons can achieve the observed dark matter density for sexaquarks by controlling branching fractions and coalescence probabilities, unlike thermal freeze-out which underproduces them by many orders of magnitude.
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Sequential Y(nS) suppression in high-multiplicity pp collisions: the experimental case for an early, globally correlated medium
Multi-differential tests on Υ(nS) and ψ(2S)/J/ψ suppression in high-multiplicity pp collisions rule out standard hadronic and string models in favor of an early globally correlated partonic medium.
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Equilibrated fraction of QCD matter in high-energy oxygen--oxygen collisions
The equilibrated core in O+O collisions overtakes the nonequilibrium corona above midrapidity multiplicity of about 20, yet corona contributions persist in central events, making pure hydrodynamics inadequate.