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Hyperphoton

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A hyperphoton is a hypothetical particle[1] with a very low mass and spin equal to one. The hypothesis of the existence of hyperphotons is an explanation for the violation of CP-invariance in the two-pion decay of a long-lived neutral kaon .[2][3][4] According to this hypothesis, there is a long-range very weak field generated by hypercharged particles (for example, baryons), whose quantum carrier is a hyperphoton, which acts differently on and mesons whose hypercharges differ in signs.

Criticism of the hypothesis

This hypothesis contradicts a number of experimental data and theoretical principles of physics. Thus, it follows that the probability of two-photon decay of a long-lived neutral kaon is proportional to the square of the kaon energy in the laboratory reference frame, which does not agree with experimental data on its independence from the kaon energy.[5] The experimental data also contradict such a consequence of this hypothesis as a very high probability of hyperphoton emission during the decay of a long-lived neutral kaon.[6] This hypothesis implicitly uses the action at a distance rejected by modern physics. In addition, it implies a violation of the equivalence principle.[7]

See also

References

  1. ^ Ю.В. Катышев, Д.Л. Новиков, Э.А. Полферов Англо-русский словарь по физике высоких энергий. - М., Русский язык, 1984. - c. 162
  2. ^ Cabbibo N., Lee T. D., Bermstein J. CP invariance and the decay mode of the // Phys. Lett., 12, 146, (1964)
  3. ^ J. S. Bell and J. K. Perring Decay of the Meson // Phys. Rev. Lett. 13, 348 – Published 7 September 1964
  4. ^ Peter R. Phillips New Tests for the Invariance of the Vacuum State Under the Lorentz Group // Phys. Rev. 139, B491 – Published 26 July 1965
  5. ^ Окунь Л. Б. "Нарушение CP-инвариантности" // УФН 89 603–646 (1966)
  6. ^ Steven Weinberg Do Hyperphotons Exist?] // Phys. Rev. Lett. 13, 495 – Published 12 October 1964
  7. ^ Любошиц В.Л., Оконов Э.О., Подгорецкий М.И. Галактическое поле гиперзарядов и распад долгоживущих нейтральных K-мезонов на два пи-мезона // Ядерная физика 1, 490 (1965).