In electrodynamics there is a mutual exchange of energy and momentum between the matter field and the electromagnetic field and the total energy and momentum are conserved. For a constant magnetic field and harmonic scalar potential, electrodynamics is shown to be isomorph to a system of damped/amplified harmonic oscillators. These can be described by squeezed coherent states which in turn are isomorph to self-similar fractal structures. Under the said conditions of constant magnetic field and harmonic scalar potential, electrodynamics is thus isomorph to fractal self-similar structures and squeezed coherent states. At a quantum level, dissipation induces noncommutative geometry with the squeezing parameter playing a relevant role. Ubiquity...
Quantum coherence in condensed phase electronic resonance energy transfer (RET) is described within ...
In Newtonian mechanics, any closed-system dynamics of a composite system in a microstate will leave ...
In a quantum system, different energy eigenstates have different properties or features, allowing us...
The self-similarity properties of fractals are studied in the framework of the theory of entire anal...
Recent results on the relation between self-similarity and squeezed coherent states are presented. I...
We offer in this review a description of the vacuum energy of self-similar systems. We describe two ...
Many systems in nature have arborescent and bifurcated structures such as trees, fern, snails, lungs...
We construct self-similar functions and linear operators to deduce a self-similar variant of the Lap...
We construct self-similar functions and linear operators to deduce a self-similar variant of the Lap...
Using Schwinger's quantum action principle, dispersion relations are obtained for neutral scalar mes...
Delineating the framework for a fundamental model of long-range coherence in biological systems is s...
Biological fractals are truncated, i.e., their selfsimilarity extends at most over a few orders of m...
We study environmentally induced decoherence of an electromagnetic field in a homogeneous, linear, d...
OAPA The dissipative quantum electromagnetics is introduced in a comprehensive manner as a field-mat...
A microscopic scenario of constituent interactions in high energy collisions of hadrons and nuclei i...
Quantum coherence in condensed phase electronic resonance energy transfer (RET) is described within ...
In Newtonian mechanics, any closed-system dynamics of a composite system in a microstate will leave ...
In a quantum system, different energy eigenstates have different properties or features, allowing us...
The self-similarity properties of fractals are studied in the framework of the theory of entire anal...
Recent results on the relation between self-similarity and squeezed coherent states are presented. I...
We offer in this review a description of the vacuum energy of self-similar systems. We describe two ...
Many systems in nature have arborescent and bifurcated structures such as trees, fern, snails, lungs...
We construct self-similar functions and linear operators to deduce a self-similar variant of the Lap...
We construct self-similar functions and linear operators to deduce a self-similar variant of the Lap...
Using Schwinger's quantum action principle, dispersion relations are obtained for neutral scalar mes...
Delineating the framework for a fundamental model of long-range coherence in biological systems is s...
Biological fractals are truncated, i.e., their selfsimilarity extends at most over a few orders of m...
We study environmentally induced decoherence of an electromagnetic field in a homogeneous, linear, d...
OAPA The dissipative quantum electromagnetics is introduced in a comprehensive manner as a field-mat...
A microscopic scenario of constituent interactions in high energy collisions of hadrons and nuclei i...
Quantum coherence in condensed phase electronic resonance energy transfer (RET) is described within ...
In Newtonian mechanics, any closed-system dynamics of a composite system in a microstate will leave ...
In a quantum system, different energy eigenstates have different properties or features, allowing us...