Nuclear Aspects of Overlapping Holographic Phase Patterns
نویسنده
چکیده
In this paper we will qualitatively evaluate the local and rather strong interaction of overlapping lowdimensional holographic memories patterns emerging between topological charges and point particles carrying spin, where the energy is given by the sum or integral over the squared holographic signal real part. We find that the interactions are controlled by neutral Berry type geometric phases with holographic patterns preferring structures very typical for small nuclear charges. It is conjectured that the mediating neutral patterns responsible for interaction and energy shifts are neutrons and neutrinos, where attractive interaction can get very strong if the neutral Berry phase patterns of the nuclear cluster are in phase. A cluster of four partially overlapping topological charge memory patterns describing the special Beryllium situation provides for evidence that the stability of a cluster memory pattern depends on phase relationships given by phase symmetries related to the existence of a central neutral pattern and energy decrease. Forcing special phase conditions between rotated rotators this principle could act as a prototype for holographic energy releases/drives.
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