The Role of Vacuum Polarization in the Large Hadron Collider

Authors

  • Stanislav Konstantinov

quantum vacuum, dark matter, proton, polarization, resonance, mass, energy

Abstract

The article discusses experimental discoveries recently made at the Large Hadron Collider (LHC) and not received an explanation in the Standard Model. The recognition of the polarization of quantum vacuum (dark matter) under the action of ultra relativistic protons and superpower magnetic and electric fields distorts the spatial patterns in the LHC and allows us to state the presence of the third channel of proton interaction in the LHC, in addition to their mutual collisions.

Downloads

How to Cite

The Role of Vacuum Polarization in the Large Hadron Collider. (2020). Global Journal of Science Frontier Research, 20(A4), 21-27. https://journalofscience.org/index.php/GJSFR/article/view/2641

References

Yu Eroshenko (2019) Physics news on the Internet (based on electronic preprints). 62(11), 1170-1171.

Stanislav Konstantinov (2019) Dark Matter Domains as Volume Resonators of Electromagnetic, Gravitational and Spin Energy. 6(9), 1-10.

I Dremin (2015) The interaction region of high energy protons. 58(1).

I Dremin (2018) Some new discoveries at colliders. 61(4), 381-388.

V Burkert, L Elouadrhiri, F Girod (2018) The pressure distribution inside the proton. 557(7705), 396-399.

E Levichev, A Skrinsky, G Tumaikin, Yu Shatunov (2018) Electron-positron beam collision studies at the Budker Institute of Nuclear Physics. 61(5), 405-423.

Yu Galaktionov (2017) Search for antimatter and dark matter, precision studies of the cosmic rays fluxes on the international space station. AMS experiment. Results of four year exposure. 60(1).

Roger Barlow (2018) Tenured Radicals: How Politics Has Corrupted Our Higher Education, Roger Kimball. 1990. Harper and Row, New York, NY. 204 pages. ISBN: $18.95. 13(1), 52-52.

Stanislav Konstantinov (2020) The Key to the Puzzle "Effect PAMELA". 5(1), 14.

P Higgs (1964) Broken symmetries, massless particles and gauge fields. 12(2), 132-133.

V Rubakov (2012) Higgs Boson. 10.

Leo Sapogin, Ryabov Yu (2016) The Mass Spectrum of Elementary Particles in Unitary Quantum Theory and Standard Model. 16(2).

Leo Sapogin, Yu Ryabov, V Boichenko (2015) The Unitary Quantum Theory and a New Sources of Energy.

Leo Sapogin, V Dzhanibekov, M Moкulsky, Yu. Ryabov, Yu. Savin, V Utchastkin (2015) About the Conflicts between the Unitary Quantum Theory and the Special and General Relativity Theories. 06(06), 780-785.

Joseph Lykken, Maria Spiropulu (2014) Supersymmetry and the Crisis in Physics. 310(5), 34-39.

The Role of Vacuum Polarization in the Large Hadron Collider

Published

2020-04-27

How to Cite

The Role of Vacuum Polarization in the Large Hadron Collider. (2020). Global Journal of Science Frontier Research, 20(A4), 21-27. https://journalofscience.org/index.php/GJSFR/article/view/2641