high energy physics

Experimental prospects for quantum decoherence measurements at colliders

arXiv:2604.16268

summary

The paper investigates how energetic radiation at particle colliders can cause decoherence and reduce entanglement of fermion–antifermion spin systems, and assesses the experimental prospects for observing this effect at the LHC, Belle II, and future electron‑positron colliders.

Abstract

We study the impact of radiation on quantum systems defined by the spins of elementary fermion-antifermion pairs produced at colliders. We present predictions for several processes, showing that energetic final-state radiation can induce decoherence and significantly reduce the entanglement of quantum systems formed by elementary fermion pairs. We investigate the feasibility of observing this effect experimentally in exclusive samples with energetic radiation. A statistically significant signal can be obtained with current data in associated production at the LHC and in production at Belle 2. Future electron-positron colliders operated at the pole or well above the production threshold will extend these prospects further.

4 pages, 2 figures

Topics & keywords

#quantum decoherence#entanglement#collider physics#final-state radiation#fermion pair productiondecoherenceentanglementfinal-state radiationttbar productione+e- collisionsBelle IILHC
Experimental prospects for quantum decoherence measurements at colliders · wovepaper