Geometrization of matter and antimatter by the coadjoint action

En résumé (grâce à un LLM libre auto-hébergé)

  • The article explores the geometrization of matter and antimatter through the coadjoint action of a group on its momentum space.
  • It presents the group of twins and describes Dirac's antiparticle matter, in relation to the CPT theorem.
  • The analysis shows that antimatter can have negative mass and that photons do not have an antiparticle.

f4503 Geometrization of matter and antimatter through coadjoint action of a group on its momentum space. 4 : The Twin group. Geometrical description of Dirac's antimatter. Geometrical interpretations of antimatter after Feynman and the so-called CPT theorem. (p3)
The movement of a particle which is the CPT-symmetrical of a normal particle takes place in the fold F*.

. **Fig.7 (45f7) : ( **l = 1 ; m = - 1 ) case. Corresponds to CPT-symmetry. But the coadjoint action gives negative mass and energy. The CPT-symmetric of a particle of matter is a particle of matter, but with negative mass.

Now, examine the impact on photons movement and momentum. The z-Symmetry has no impact on it : there is no "antiphoton". As all the charges of the photon are zero it does not change it. It is identical to its antiparticle.

The coadjoint action of orthochron components modifies the movement and the momentum of the photon, but keeps unchanged its energy. See figure 8.

. **Fig. 8 **(45f8) : Coadjoint action of orthochron elements on photon's movement and momentum. ** **

** ** . Fig.9 (45f9) : The coadjoint action of antichron elements on photon's movement and momentum, reverses the photon energy : it travels backwards in time.

The antichron elements of the group act on the momentum through coadjoint action. Such elements transform the normal photon, travelling forward in time in the z = 0 plane of the fold F into a movement in the corresponding plane of the fold F*. This photon travels backwards in time. Its energy is negative.

About the contents of the two folds.

They can be summarized in the following tables. . **Fig.10 **(45f10) : Classical particles-antiparticles zoo. . . ** ** **Fig.11 ** : Ghost particles-ghost-antiparticles zoo.