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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String closepacking raises effective tension in overlapping strings, lowering strangeness suppression and yielding a competitive description of enhanced strange-hadron production in high-multiplicity pp collisions.
citing papers explorer
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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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Strangeness enhancement in pp collisions from string closepacking in Pythia 8.3
String closepacking raises effective tension in overlapping strings, lowering strangeness suppression and yielding a competitive description of enhanced strange-hadron production in high-multiplicity pp collisions.