The properties of the vacuum are described by quantum physics including the response to external fields such as electromagnetic radiation. Of the two parameters that govern the details of the electromagnetic field dynamics in vacuum, one is fixed by the requirement of Lorentz invariance c = 1/root epsilon(0)mu(0) The other one, Z(0) = root mu(0)/epsilon(0) = 1/(c epsilon(0)) and its relation to the quantum vacuum, is discussed in this contribution. Deriving epsilon(0) from the properties of the quantum vacuum implies the derivation of the fine structure constant
Physical phenomena emerge from the quantum fields everywhere in space. However, not only the phenome...
The cosmological constant problem arises at the intersection between general relativity and quantum ...
The golden ratio is found to be related to the fine-structure constant, which determines the strengt...
The properties of the vacuum are described by quantum physics including the response to external fie...
12 pagesInternational audienceArnold Sommerfeld introduced the fine-structure constant that determin...
We present a new perspective on the link between quantum electrodynamics (QED) and Maxwell’s equatio...
In the report submitted here, an elementary formula is presented that allows calculation of the fine...
In the present work we propose a semi-classical model that links well-known phenomena of quantum fie...
Vacuum, where matter exists is an objective reality of Nature. It has a structure consists of electr...
The fine structure constant is this "magic and enigmatic" number close to 1/137 that appears in seve...
A phenomenological and Newtonian model is proposed to explain the recent observed cosmological varia...
The quantum vacuum structure is essential when trying to understand its manifestations in experiment...
In the classical theory of electromagnetism, the permittivity epsilon (0) and the permeability mu (0...
The paper is replaced by a new version (12-2019): DOI: 10.5281/zenodo.3572846 ...
The fine-structure constant, which determines the strength of the electromagnetic interaction, is br...
Physical phenomena emerge from the quantum fields everywhere in space. However, not only the phenome...
The cosmological constant problem arises at the intersection between general relativity and quantum ...
The golden ratio is found to be related to the fine-structure constant, which determines the strengt...
The properties of the vacuum are described by quantum physics including the response to external fie...
12 pagesInternational audienceArnold Sommerfeld introduced the fine-structure constant that determin...
We present a new perspective on the link between quantum electrodynamics (QED) and Maxwell’s equatio...
In the report submitted here, an elementary formula is presented that allows calculation of the fine...
In the present work we propose a semi-classical model that links well-known phenomena of quantum fie...
Vacuum, where matter exists is an objective reality of Nature. It has a structure consists of electr...
The fine structure constant is this "magic and enigmatic" number close to 1/137 that appears in seve...
A phenomenological and Newtonian model is proposed to explain the recent observed cosmological varia...
The quantum vacuum structure is essential when trying to understand its manifestations in experiment...
In the classical theory of electromagnetism, the permittivity epsilon (0) and the permeability mu (0...
The paper is replaced by a new version (12-2019): DOI: 10.5281/zenodo.3572846 ...
The fine-structure constant, which determines the strength of the electromagnetic interaction, is br...
Physical phenomena emerge from the quantum fields everywhere in space. However, not only the phenome...
The cosmological constant problem arises at the intersection between general relativity and quantum ...
The golden ratio is found to be related to the fine-structure constant, which determines the strengt...