In the theory of physical information, the physical phenomena of electromagnetism, quantum mechanics and gravity can be described by means of the action as information enclosed in four dimensional structures with oscillator properties, under the conditions of the Hamilton principle. The present report shows that it is also possible to simulate the behaviour of the mass under these conditions. As a result, among other things, the statements are obtained that the mass is stored virtual action; the rest frame of elementary objects and the inertia of matter are caused by the action stored in the mass oscillators.
References
[1]
Khintchine, A. (1934) Korrelationstheorie der stationären stochastischen Prozesse. Mathematische Annalen, 109, 605-615. https://doi.org/10.1007/BF01449156
[2]
Champeney, D.C. (1973) Fourier Transforms and Their Physical Applications. Academic, London.
[3]
Dudek, H.J. (2022) Physical Information Generated by Action in Maxwell Fields. International Journal of Quantum Foundations, 4, 1-35.
[4]
Dudek, H.J. (2022) Action as Foundation in Cosmology. https://www.phys-info-theo-e.com
Peskin, M.E. and Schroeder, D.V. (1995) An Introduction to Quantum Field Theory. Westview Press, USA. https://www.routledge.com/An-Introduction-To-Quantum-Field-Theory/Peskin-Schroeder/p/book/9780367320560
[7]
Dudek, H.J. (2022) Interaction between Masses by Exchange of Information. https://www.phys-info-theo-e.com
[8]
Dudek, H.J. (2022) Structure and Oscillation Behaviour of Static Maxwell Photon. https://www.phys-info-theo-e.com
[9]
Glanz, J. (1999) Which Way to the Big Bang? Science, 284, 1448-1451.
[10]
Dudek, H.J. (2022) Structure and Oscillation Behaviour of Dynamic Maxwell Photons of Light. https://www.phys-info-theo-e.com
[11]
Dudek, H.J. (2022) Physical Information Theory, an Oscillator Approach to Elementary Objects. https://www.phys-info-theo-e.com