2017
DOI: 10.17951/aaa.2016.71.11
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Dynamic Quantum Vacuum and Relativity

Abstract: <p>A model of a three-dimensional dynamic quantum vacuum with variable energy density is proposed. In this model, time we measure with clocks is only a mathematical parameter of changes running in quantum vacuum. Mass and gravity are carried by the variable energy density of quantum vacuum. Each elementary particle is a structure of quantum vacuum and diminishes the quantum vacuum energy density. Symmetry “particle – diminished energy density of quantum vacuum” is the fundamental symmetry of the universe… Show more

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Cited by 14 publications
(16 citation statements)
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References 30 publications
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“…Protons are falling apart and disintegrating back into the energy of the vacuum. This reduces the mass and the energy of the black holes 14 .…”
Section: The Density Of the Vacuum On The Black Hole Surface Neutronmentioning
confidence: 99%
“…Protons are falling apart and disintegrating back into the energy of the vacuum. This reduces the mass and the energy of the black holes 14 .…”
Section: The Density Of the Vacuum On The Black Hole Surface Neutronmentioning
confidence: 99%
“…2 )︁ and Δ = = ( P − ) is a change of the quantum vacuum energy density [18][19][20][21][22][23][24][25]. Equation 5corresponds to the following two equations:…”
Section: From the Reduction-state Processes Of Creation/annihilation mentioning
confidence: 99%
“…Equation (22) indicates that the vector potential Δ (r, ), which depends on the frequency of virtual particles of the 3D quantum vacuum and which has a quantized amplitude, plays the role of a real wave function for the photon in a non-local representation. In other words, in the light of Eq.…”
Section: From the Reduction-state Processes Of Creation/annihilation mentioning
confidence: 99%
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“…where = 4 2 is the area enclosed by the moving light beams. Equation (49) shows that the phase difference between the counter-rotating beams is proportional to the velocity of the quantum vacuum determined by the motion of virtual particles produced in the RS processes of the region under consideration [29]. Moreover, in a special relativistic picture, the phase difference (49) may be expressed as…”
Section: About the Advances Of Quantum Relativity Regarding Special Rmentioning
confidence: 99%