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The LHC just ruled out another hiding place for quantum black holes

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Physicists analyzing data from the Large Hadron Collider found no evidence of microscopic quantum black holes being produced in particle collisions. The search was motivated by theories suggesting extra spatial dimensions could make gravity significantly stronger at subatomic scales, potentially allowing such exotic objects to form. While no quantum black holes were detected, the results significantly constrain the parameter space where they could theoretically exist.


The findings help narrow down possibilities for quantum gravity theories and models proposing extra dimensions beyond our observable three spatial dimensions. This research advances our understanding of fundamental physics by systematically testing predictions about where new physics beyond the Standard Model might emerge.


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Physicists searching through Large Hadron Collider data found no evidence that the machine has been producing microscopic quantum black holes, but the result sharply narrows where such exotic physics could still be hiding. These hypothetical black holes could form if extra spatial dimensions make gravity much stronger at extremely tiny scales, potentially offering clues toward the long-sought theory of quantum gravity.

Source: The LHC just ruled out another hiding place for quantum black holes