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February 2, 2026SciPost Physics Proceedings0 citationsOpen Access

The magic of top quarks

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CWChris D. WhiteMWMartin White

Key Points

  • The aim is to explore the role of top quarks in quantum computing and enhance the understanding of quantum magic.
  • Reviewed the relationship between top quarks and quantum computing properties.
  • Analyzed LHC processes that involve top quark pair production.
  • Discussed the implications of using quarks for quantum entanglement tests.
  • Identified top quarks as a natural source of quantum magic.
  • Demonstrated the potential of LHC-produced quarks for advancing quantum computational techniques.

Abstract

In recent years, there has been increasing collaboration between the fields of quantum computing and high energy physics, including using LHC processes such as top (anti-)quark pair production to perform high energy tests of quantum entanglement. In this proceeding, I will review another interesting property from quantum computing (“magic”), that is needed to make quantum computers with genuine computational advantage over their classical counterparts. How to make and enhance magic in general quantum systems is an open question, such that new insights are always useful. To this end, we will show that the LHC naturally produces magic top quarks, providing a novel playground for further study in this area.

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Cite This Study

White et al. (2026) studied this question.

synapsesocial.com/papers/6980fcb6c1c9540dea80e761https://doi.org/10.21468/scipostphysproc.18.017
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