Talk detail

MG15 - Talk detail

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 Participant

Burinskii, Alexander

Institution

NSI Russian Academy of Sciences  - B. Tulskaya 52 - Moscow - Moscow region - Russia

Session

ES3

Accepted

Yes

Order

8

Time

17:30 15'

Talk

Oral abstract

Title

Kerr-Newman Spinning Particle Meets "New Physics" Beyond the Standard Model
Coauthors

Abstract

Standard model is not ultimate and has to be generalized to a "New Physics" beyond the Standard Model. The main problem is the lack of consistency with gravity. In addition, the origin of the mechanism symmetry breaking remains uncertain, and both the extra dimensions and superpartners were not confirmed in recent experiments. Specific features of the Kerr geometry bring a few cardinally different concepts leading to "New Physics" beyond the Standard Model: C1. Kerr geometry shows that spin has great influence on space-time which increases effective scale of gravitation interaction from Planck to Compton distance. C2. Supersymmetry, which was not confirmed in form of the "superpartners", finds natural application as the field model, implementing nonperturbative mechanism of symmetry breaking. Realization of these ideas on Kerr-Schild space-time leads to a supersymmetric bag model of spinning particle, in which supersymmetric Higgs model regularizes Kerr-Newman gravity, creating inside the bag a regular and flat zone for quantum processes. There appears third principally new concept: C3. Gravity should not be quantized because the bag boundary separates it from the quantum zone.

Pdf file

 

Session

ES3

Accepted

Yes

Order

13

Time

18:45 15'

Talk

Oral abstract

Title

The Kerr-Newman spinning particle as a model of electron II: Features of the electromagnetic and spinor excitations
Coauthors

Abstract

Kerr-Newman solution with parameters of an electron has singular ring of the Compton radius. This two-sheeted background is regularized by the bag model based on the Higgs model of symmetry breaking. The typical bag models are soft and deformable. Under influence of spin super-bag takes the form of a thin oblate disk, and EM excitations of the bag create string-like traveling waves positioned along the disk border. We describe peculiarities of the corresponding wave excitations.

Pdf file

 

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