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September 10, 20250 citations

Quantum simulation of scattering amplitudes and interferences in perturbative QCD

HCHerschel A. ChawdhryMPMathieu PellenSWSimon Williams

Key Points

  • Quantum computers can calculate scattering amplitudes and interferences in quantum field theories, enhancing computational efficiency.
  • The study validates techniques on simulated quantum computers and demonstrates algorithms on a 56-qubit trapped-ion quantum computer.
  • Hints of a potential quantum advantage are noted for processes with identical external particles, promising future developments.
  • This work represents a significant advancement towards full quantum simulation of generic perturbative QCD processes.

Abstract

Abstract A flagship application of quantum computers is the simulation of other quantum systems, including quantum field theories. In this article, we show how quantum computers can be employed to naturally calculate Feynman diagrams and their interferences in Quantum Chromodynamics (QCD). We simulate the colour parts of the interactions directly on the quantum computer, while the kinematic parts are for now pre-computed classically. For processes where some of the external particles are identical, we find the first hints of a potential quantum advantage. We validate our techniques using simulated quantum computers. Furthermore, for toy examples we also demonstrate our algorithms on a 56-qubit trapped-ion quantum computer. The work constitutes a further key step towards a full quantum simulation of generic perturbative QCD processes.

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Cite This Study

Chawdhry et al. (2025) studied this question.

synapsesocial.com/papers/68c1c24454b1d3bfb60f01b4https://doi.org/10.21203/rs.3.rs-7245276/v1
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