Quantum detection of CP violation in the tt system: tomography
Priyanka Lamba, Fabio Maltoni, Olimpia Miniati, Eleni Vryonidou
Abstract
We develop a quantum-tomographic framework for determining whether possible CP-odd effects in t t events originate in production, in decay, or in both. In the narrow-width approximation, the process I t t b+ν\, b-ν factorises into a production density matrix and top and antitop decay density matrices. We extend the standard tomography procedure to a general anomalous Wtb vertex and derive the corresponding angular distributions. Polar-angle distributions retain their usual tomographic form, up to modifications of the spin-analysing powers, and can therefore be used to reconstruct the production density matrix and test its CP properties. By contrast, dedicated azimuthal observables involving the b--lepton decay planes contain characteristic sine modulations that provide linear probes of possible new CP-violating interactions in the decay vertex. Combining the two classes of observables gives a systematic strategy for separating sources of CP violation in production and in decay. We illustrate the resulting angular signatures for representative t t production scenarios at hadron and lepton colliders.
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