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First constraint on Born-rule violations at high-energy colliders

Antony Valentini, Mira Varma·July 8, 2026
hep-phhep-thQuantum Physics

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Abstract

We obtain an experimental constraint on possible Born-rule violations at high-energy colliders. We model Born-rule violations with differential scattering cross sections $dσ/dΩ$ subject to an angular smearing by a narrow Gaussian of width $\varepsilon$ (with respect to $x=\cosθ$ for scattering angle $θ$). For large-angle Bhabha ($e^{+}e^{-} \rightarrow e^{+}e^{-}$) scattering, at a centre-of-mass energy $\sqrt{s}=29\, \mathrm{GeV}$, data from the PEP collider at SLAC allow us to set an upper bound of $\varepsilon<0.042$ at $95\%$ confidence. This corresponds to a Gaussian smearing over an angular range of twice the experimental bin width, and hence provides a physically meaningful limit on deviations from the Born rule. Future prospects for improving this limit are discussed.

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