Physics

Scientists hunt for tiny quantum black holes using particle collider

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Quantum mechanicsBlack holeParticle physics

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Physicists at UC Santa Barbara have expanded the search for microscopic black holes that may be produced in particle collisions at CERN's Large Hadron Collider. These theoretical quantum black holes, if detected, could help resolve fundamental inconsistencies in our understanding of spacetime structure. The research also demonstrates a novel methodology for detecting new particles at the LHC.


Finding evidence of quantum black holes would represent a major breakthrough in theoretical physics, potentially bridging gaps between quantum mechanics and general relativity. The new search methodology could also be applied to discover other previously undetectable particles, advancing experimental techniques in high-energy physics.


Physicists at UC Santa Barbara have extended the search for evidence of microscopic black holes produced at the Large Hadron Collider (LHC) at the European Organization for Nuclear Research (CERN). The formation of these tiny, fleeting objects at the LHC represents one way theorists have sought to resolve anomalies in our understanding of the basic structure of spacetime, while the method used to look for them demonstrates a new way of searching for new particles.

Source: Physicists extend the search for quantum black holes at the LHC