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Prospects for quantum process tomography at high energies

High Energy Physics - Phenomenology 2025-04-24 v2 High Energy Physics - Experiment High Energy Physics - Theory Quantum Physics

Abstract

In quantum information theory, the evolution of an open quantum system -- a unitary evolution followed by a measurement -- is described by a quantum channel or, more generally, a quantum instrument. In this work, we formulate spin and flavour measurements in collider experiments as quantum instruments. We demonstrate that the Choi matrix, which completely determines input-output transitions, can be both theoretically computed from a given model and experimentally reconstructed from a set of final state measurements (quantum state tomography) using varied input states. The experimental reconstruction of the Choi matrix, known as quantum process tomography, offers a powerful new approach for probing potential extensions of the Standard Model within the quantum field theory framework and, at the same time, constitutes a new foundational test of quantum mechanics itself. As an example, we outline the quantum process tomography approach applied to the e+ettˉe^+ e^- \to t \bar{t} process at a polarized lepton collider.

Keywords

Cite

@article{arxiv.2412.01892,
  title  = {Prospects for quantum process tomography at high energies},
  author = {Clelia Altomonte and Alan J. Barr and Michał Eckstein and Paweł Horodecki and Kazuki Sakurai},
  journal= {arXiv preprint arXiv:2412.01892},
  year   = {2025}
}

Comments

37 pages, 3 figures, v2: improved presentation

R2 v1 2026-06-28T20:20:22.947Z