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Physicists Discover Role of Tensor Mesons in Light-by-Light Scattering

07:38, 29 July

Edited by: gaya ❤️ one

Recent research has revealed that tensor mesons play a significant role in light-by-light scattering, a phenomenon where photons interact with each other through virtual particles. This discovery enhances our understanding of particle interactions and has implications for testing the Standard Model of particle physics.

The study, conducted by researchers at the Vienna University of Technology, utilized holographic quantum chromodynamics to map processes in four dimensions onto a five-dimensional space. This approach allowed for more precise calculations of the contributions of tensor mesons to the muon's anomalous magnetic moment (g-2). The findings indicate that tensor mesons contribute positively to the muon g-2, providing a more accurate understanding of particle interactions.

These advancements in theoretical physics offer deeper insights into the fundamental forces governing the universe and may guide future experimental research in particle physics.

Sources

  • Mirage News

  • Longitudinal short-distance constraints on hadronic light-by-light scattering and tensor meson contributions to the muon $g-2$

  • Tensor meson transition form factors in holographic QCD and the muon $g-2$

  • ATLAS measures light scattering on light and constrains axion-like particles

Read more news on this topic:

05 June

Muon Magnetic Moment Puzzle Solved: Fermilab's Latest Measurement Validates Standard Model

04 June

Muon g-2 Experiment Refines Standard Model with Most Precise Measurement

30 January

Scientists Achieve Breakthrough in Controlling Light Speed Using Bose-Einstein Condensates

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