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Hamiltonian approach to isospinning ${\mathbb C}P^2$ solitons

High Energy Physics - Theory 2025-05-14 v1

Abstract

Isorotating CP2{\mathbb C}P^2 Q-solitons in 2+12+1 dimensions were studied. Hamiltonian formalism as a more physically meaningful yet fairly demanding approach was adopted during the investigation, which helped to exclude unobservable parameters such as angular frequencies and Lagrangian. This approach also highlighted the non-topological nature of the stabilization mechanism and revealed a number of similarities between well-known U(1)U(1) Q-balls and CP2{\mathbb C}P^2 isospinning solitons, thus rendering the latter a suitable extension of the former for the case of higher Lagrangian symmetry group and paving the way for further CPN{\mathbb C}P^N generalizations. Due to the peculiarities of the model, numerical optimisation algorithms were chosen to obtain the solutions.

Keywords

Cite

@article{arxiv.2505.08110,
  title  = {Hamiltonian approach to isospinning ${\mathbb C}P^2$ solitons},
  author = {Sergei Antsipovich},
  journal= {arXiv preprint arXiv:2505.08110},
  year   = {2025}
}

Comments

21 pages, 10 figures