Matter consists of quarks. The building blocks of atomic nuclei, protons and neutrons, are composed of these fundamental particles – held together by gluons. These act as glue (English glue = Klebstoff) and hold the quarks together. However, the theory of the strong nuclear force predicts something else: gluons should also be able to bind to each other – forming so-called “gluon balls”, particles without any quark content, essentially matter made of pure cohesion.

Physicists have been searching for this state for decades. Now, the Beijing Spectrometer(BESIII) collaboration reports in a preprint on arXiv and a presentation at the International Conference on High Energy Physics. The particle X(2370) is most likely predominantly composed of a gluon ball.

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[–] 19 points 1 month ago
[–] 11 points 1 month ago (8 children)

Nicely written article. Sounds promising, and the measurements strongly match the theory.

I do wonder if X isn’t necessarily including quarks of a consistent colour though; this could influence the decay paths.

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  • [–] 12 points 1 month ago (7 children)

    I'm wondering if you could combine X with sugar and spice and everything nice.

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  • [–] 3 points 1 month ago (3 children)
  • [–] 9 points 1 month ago*

    Headline:

    Matter from nothing

    Content:

    held together by gluons.

    😒

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  • [–] 2 points 1 month ago
    [–] 2 points 1 month ago (1 child)

    Matter consists of quarks and electrons.

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  • [–] 2 points 1 month ago

    Super glue or Crazy glue?

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