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Odderon in the diffractive dip region

Published 26 Aug 2026 in hep-ph, hep-ex, and hep-th | (2608.25713v1)

Abstract: We examine possible CC-odd effects in elastic proton-proton and proton-antiproton scattering in the diffractive dip region. Collider data with $\sqrt{s}&gt;500$ GeV are fitted for $0.2&lt;|t|&lt;1~\GeV<sup>2$, using a simple Regge-inspired parametrization of effective CC-even and CC-odd amplitudes. The relative phases are not left free, but are fixed by the signature factors of the corresponding even and odd contributions. In this way, the real and imaginary parts of each term are linked by crossing. The CC-even amplitude is first described by three effective Pomeron-like terms. The CC-odd sector is then tested with several one-term Odderon-like forms. We find that the fits do not require a stable nonzero CC-odd term: the odd contribution is either compatible with zero or becomes weakly constrained when we allow extra freedom. We then test whether the conclusion is changed by adding either a fourth Pomeron-like term or a second Odderon-like term. The improvement obtained with the fourth Pomeron-like term is mainly CC-even, while the second Odderon-like term is not resolved as an independent contribution. These results provide a complementary test of recent determinations of the Odderon amplitude based on scaling and analyticity.

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