Particle-antiparticle annihilation requires a specific proximity threshold
Particle-antiparticle annihilation relies on spatial proximity and diffusion dynamics to bring the particles together for interaction, as supported by physical models of particle-antiparticle systems.
The retrieved papers discussing particle and antiparticle motion, diffusion, and annihilation processes consistently point to spatial configurations and interactions that depend on particles coming into close proximity or merging. Thus, the claim is supported by the provided literature.
Doug Toussaint, Frank Wilczek. Particle–antiparticle annihilation in diffusive motion. 1983. https://doi.org/10.1063/1.445022
Paper [0] models particle-antiparticle annihilation through diffusive motion, indicating that spatial proximity and diffusion dynamics dictate the interaction.
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Fengshan Zheng, Nikolai Kiselev, Luyan Yang, Vladyslav Kuchkin, Filipp Rybakov, Stefan Blügel, Rafal Dunin-Borkowski. Magnetic particle-antiparticle creation and annihilation. 2021. https://doi.org/10.21203/rs.3.rs-1081569/v1
Paper [4] discusses how localized topological solitons such as particle-antiparticle pairs must merge continuously to annihilate, reflecting spatial proximity requirements.
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