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[4] Réorganisation cohérente du milieu énergétique et stabilité quantique

Author:

Savouret, Aime

Category:

Research Papers

Sub-Category:

Quantum Theory / Particle Physics

Language:

French

Date Published:

May 8, 2026

Downloads:

27

Keywords:

milieu énergétique, stabilité quantique, champ proche, champ lointain, modes cohérents, mémoire dynamique, quantification, cohérence de phase, stabilité atomique, interférences, effet tunnel, d&e

Abstract:

Le document propose une interprétation des phénomènes quantiques à partir d’un milieu énergétique. Une particule y est vue comme une structure stable de ce milieu, et non comme un objet séparé. Les états stables correspondent à des modes cohérents du champ proche, sans perte continue d’énergie. Les transitions, mesures ou changements non stationnaires peuvent produire un champ lointain, emportant de l’énergie hors du système local. Dans cette lecture, l’atome n’est pas décrit comme une orbite classique qui devrait rayonner et s’effondrer. Il est compris comme un mode stationnaire cohérent du système électron noyau milieu. La quantification apparaît comme une condition de stabilité et de cohérence. Le texte introduit aussi l’idée d’une mémoire dynamique du milieu : les perturbations passées peuvent laisser un sillage retardé, capable d’influencer la cohérence future du système. Le texte applique cette idée aux interférences, à l’effet tunnel, à la mesure et à la décohérence. La mesure devient une rupture de cohérence par couplage avec un dispositif macroscopique. Les franges d’interférence et la transmission à travers une barrière sont vues comme des effets de continuité du champ proche. Le modèle conserve plusieurs résultats connus de la mécanique quantique, tout en laissant ouvertes des questions comme l’origine de la constante de Planck réduite, le spin, l’intrication et la formulation relativiste.

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