The Visual Problem of High Energy Physics, Gravitation and Cosmology

Authors

  • Leo G. Sapogin

  • V. A. Dzhanibekov

  • Yu. A. Ryabov

unitary quantum theory, standard model, quantum electrodynamics, maxwell equations, schrdinger equation, solid state

Abstract

This article describes a model of Unitary Quantum Field theory where the particle is represented as a wave packet. The frequency dispersion equation is chosen so that the packet periodically appears and disappears without form changings. The envelope of the process is identified with a conventional wave function. Equation of such a field is nonlinear and relativistically invariant. With proper adjustments, they are reduced to Dirac, Schrödinger and Hamilton-Jacobi equations. A number of new experimental effects have been predicted both for high and low energies. Fine structure constant (1/137) was determined in 1988, masses of numerous elementary particles starting from electron were evaluated in 2007 with accuracy less than 1 %.2 pentaquarks, + barion, Higgs boson and particle 28 GeV were discovered 11 years later, all of them were evaluated with high accuracy before.

Downloads

How to Cite

The Visual Problem of High Energy Physics, Gravitation and Cosmology. (2019). Global Journal of Science Frontier Research, 19(A2), 1-36. https://www.journalofscience.org/index.php/GJSFR/article/view/2442

References

M Jammer (1961) Harvard Studies in Classical Philology. Vol. lxiv. Pp. 262. Cambridge, Mass.: Harvard University Press (London: Oxford University Press), 1960. Cloth, 48s. net.. 11(2), 178-178.

L Sapogin (1973) United Field and Quantum Mechanics. 2, 54-84.

L Sapogin (1979) On unitary quantum mechanics. 53(2), 251-266.

L Sapogin (1980) About Unitary Quantum Field Theory. 2(2), 285-300.

L Sapogin (1982) A statistical theory of measurements in unitary quantum mechanics. 70(1), 80-84.

L Sapogin (1982) A statistical theory of the detector in unitary quantum mechanics. 71(2), 246-252.

W Ritz, A Einstein (1909) Unknown Title. 15(10), 323-324.

L Sapogin (1983) Unknown Title. (1), 41.

Leo Sapogin, V Boichenko (1984) Some Open Problems of Unitary Quantum Theory. 9(3), 221.

L Sapogin, V Biochenko (1988) On the solution of one nonlinear equation. 102(4), 433-435.

L Sapogin, V Boichenko (1991) On the Charge and Mass of Particles in Unitary Quantum Theory. 104(10), 1483.

L Sapogin, I Kulikov (1995) About Unitary Quantum Field Theory. 2(2), 360-370.

L Sapogin (1996) Cold Nuclear Fusion and Energy Generation Processes in Terms of the Schrödinger Equation. 19(2), 115-120.

Leo Sapogin, Yu Ryabov (2003) ChemInform Abstract: Unitary Quantum Theory and Catalytic Process Theory. 43(2).

Leo Sapogin, Yu Ryabov (2005) ChemInform Abstract: Unitary Quantum Theory and Catalytic Process Theory. 43(2).

L Sapogin, Yu. Ryabov (2008) On the Mass Spectrum of Elementary Particles in Unitary Quantum Theory. 5(3), 475-497.

L Sapogin, Yu Ryabov (2008) On the mass spectrum of elementary particles in Unitary Quantum Theory. 5(3).

Leo Sapogin, V Dzhanibekov, V Sapogin (2008) About a New Approach to Control Electron Flow in Unitary Quantum Theory. 4(1).

L Sapogin, Yu. Ryabov (2010) New Theoretical Results about the Mass Spectrum of Elementary Particles. 2(1), 86-98.

L Sapogin (2010) About Unitary Quantum Field Theory. 2(2), 114-140.

L Sapogin, Yu Ryabov (2011) Approximation Equations with oscillating charge in Unitary Quantum Theory and its applications to the analysis of some quantum problems. 1(5).

Leo Sapogin, Yu Ryabov, V Dzhanibekov (2017) Is Unitary Quantum Theory able to change civilization?. 4(3).

Leo Sapogin, V Dzhanibekov, V Sapogin (2011) About a New Approach to Control Electron Flow in Unitary Quantum Theory. 4(1).

Leo Sapogin, Yu Ryabov (2011) ChemInform Abstract: Unitary Quantum Theory and Catalytic Process Theory. 43(2), 93-120.

Д Блохинцев (1993) Закон сохранения энергии. 51.

L Sapogin (2011) About Unitary Quantum Field Theory. 2(2).

Lijun Wang Unknown Title.

Leo Sapogin, V Dzhanibekov, V Sapogin (2012) About a New Approach to Control Electron Flow in Unitary Quantum Theory. 4(1), 2-11.

Leo Sapogin, V Dzhanibekov, Yu. Ryabov (2012) Short Review of the Unitary Quantum Theory. 06(05), 57-87.

Leo Sapogin, V Dzhanibekov, V Sapogin (2012) About a New Approach to Control Electron Flow in Unitary Quantum Theory. 4(1), 1-22.

L Sapogin (2016) Einstein International Journal Organization. 1(1), 1-18.

L Wang, A Kuzmich, A Dogariu (2000) Gain-assisted superluminal light propagation. 406(6793), 277-279.

W Hlistunov, V Poduvalcev, J Mogilyuk (2011) Science and Education pub.

Chang Tsao (2013) Neutrinos as Superluminal Particles. 4, 6-11.

(2013) Front Matter. iii.

L Sapogin, Yu Ryabov (2013) Low Energy Nuclear Reactions (LENR) -and Nuclear Transmutations at Unitary Quantum Theory. 1(1).

Leo Sapogin, V Dzhanibekov, Yu. Ryabov (2014) The Visual Problem of High Energy Physics, Gravitation and Cosmology. 14(1), 1-36.

Josef Gruber (2008) Raumenenergie-Technik.

L Sapogin, Yu Ryabov (2014) Solution of the particles scattering problems in UQT by using the oscillating charge equation. 4(4).

James Maxwell (1992) A Treatise on Electricity and Magnetism.

O Нeaviside (1892) PRACTICE VERSUS THEORY. - ELECTROMAGNETIC WAVES. 1, 488-490.

Ю Бровко Политика в наукеили наука орудие политики?.

Marinov St (1974) The velocity of light is direction dependent. 24(9), 965-970.

Lyazat Orakbai, Nurlan Dzhaynakbaev, Togzhan Salmenova, Alexandr Vdovcev, Azhar Adilkhanova, Zhansaya Meirmanova (2005) Physical development of teenagers remaining without parental care. 5-6(215-216), 2-6.

К Хайдаров (2005) Температура эфира и красные смещения.

P Laplасе (1805) Mecanique celeste. 4.

В Бронштэн (1968) о космосе и гипотезах.

Léon Brillouin (1972) Special Relativity Doppler Effect. 57-73.

А Alexandrov (1959) Доклады Всесоюзной Конференции "Пространство и время в современной физике.

Е Куракина, А Величков, Д Караиванов (1981) ПОЛУЧЕНИЕ 111IN И РАДИОИЗОТОПОВ TE И SN ИЗ СУРЬМЯНОЙ МИШЕНИ, ОБЛУЧЕННОЙ ПРОТОНАМИ ВЫСОКОЙ ЭНЕРГИИ. 62(3), 240-246.

А Logunov (1988) Гасилин А.В. Интуитивизм Анри Пуанкаре : опыт биографической реконструкции. 2(2), 45-56.

А Logunov (1987) Лекции по теории относительности и гравитации. Современный анализ проблемы.

А Logunov, В Денисов Инертная масса, определенная в ОТО, не имеет физического смысла. 51(2/82г).

Wignerе (1971) Конференция по Созданию Международного Фонда для Компенсации Ущерба от Загразнения Нефтью 1971г..

A Startsev, O Kruglyakova, Yu. Chesalov, S Ruzankin, E Kravtsov, T Larina, E Paukshtis (2013) Low Temperature Catalytic Decomposition of Hydrogen Sulfide into Hydrogen and Diatomic Gaseous Sulfur. 56(11), 969-980.

Leo Sapogin, Vladimir Dzhanibekov, Yuri Ryabov (2016) Enigmatic E-Cat of Andrea Rossi and the Unitary Quantum Theory. 03(07), 1-4.

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.

V Kuznetsov, All (2003) 5. La longueur d'onde de Louis de Broglie. 28, 77-88.

L Urutskoev (2002) 5. La longueur d'onde de Louis de Broglie. 27, 77-88.

Leo Sapogin, Yu Ryabov (2015) ChemInform Abstract: Unitary Quantum Theory and Catalytic Process Theory. 43(2).

V Fortov, All (1996) Unknown Title. 166(4), 391.

L Sapogin, Yu Ryabov (2015) Calculation of the Theoretical Mass Spectrum of Elementary Particles in Unitary Quantum Theory. 2(4-1), 71-79.

G Leo, Sapogin (2015) The Unitary Unified Quantum Field Theory. 2(4-1), 8-32.

Leo Sapogin, V Dzhanibekov, Yu Ryabov (2015) The General Unitary Quantum Picture of the World. 2(4-1), 33-53.

Leo Sapogin, A Victor, Boichenko (2015) Fundamental Equation, Commutation Relations and Relativistic, Invariance at Unitary Quantum Theory. 2(4-1), 59-70.

Leo Sapogin, V Dzhanibekov, A Kostin, M Mokulsky, Yu Ryabov, V Utchastkin (2017) Is Unitary Quantum Theory able to change civilization?. 4(3), 181-189.

Humphrey Maris (2000) On the Fission of Elementary Particles and the Evidence for Fractional Electrons in Liquid Helium. 120(3-4), 173-204.

Marcus Chown (2000) Double or Quit.

R Jastrow (1978) God and the Astronomers. 116.

Fred Hoyle, Chandra Wickramasinghe (1981) Evolution from Space. 148.

Pierre Laplace (1795) Considérations sur le systême du monde, et sur les progrès futurs de l'Astronomie. 341-351.

В Купряевн (2018) Известия ВУЗов -Физика №4.

J Clauser, A Shimony (1978) Bell's theorem. Experimental tests and implications. 41(12), 1881-1927.

Michael Horne, Abner Shimony, Anton Zeilinger (1989) Two-particle interferometry. 62(19), 2209-2212.

Smarandach Florentin (2012) Remarks on some text questions and appended paradoxes. 168-171.

Leo G. Sapogin, V A. Dzhanibekov, Y A. Ryabov (2018) General Problems of Science for Pedestrian. 4(06), 17-50.

Л Сапогин, В Джанибеков, Ю Рябов (2018) Генеральные проблемы науки для пешеходов.

Clifford Pickover The Physics BOOK. 322.

The Visual Problem of High Energy Physics, Gravitation and Cosmology

Published

2019-03-27

How to Cite

The Visual Problem of High Energy Physics, Gravitation and Cosmology. (2019). Global Journal of Science Frontier Research, 19(A2), 1-36. https://www.journalofscience.org/index.php/GJSFR/article/view/2442