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Hervorhebung von Maxwells ursprünglicher Interpretation des Elektromagnetismus (Erweiterte Wiederveröffentlichung PI)


Michaud, André




Quantum Theory / Particle Physics



Date Published:

January 13, 2022




Magnetische Masse, Magnetfeld, elektrisches Feld, Elektron, Photonenemission, Photonenabsorption


Es ist allgemein bekannt, dass die klassische Elektrodynamik, die Quantenelektrodynamik (QED) sowie die Quantenfeldtheorie (QFT) sich auf die Maxwellsche Wellentheorie und seinen Gleichungen basieren, aber es ist viel weniger bekannt, dass sie nicht auf seiner ersten Interpretation der Beziehung zwischen dem Eund dem B-Feld beruhen, aber sondern auf die Ludvig Lorenz Interpretation dieser Beziehung basiert sind, mit der Maxwell nicht einverstanden war. Maxwell vertrat die Ansicht, dass sich beide Felder gegenseitig zyklisch induzieren mussten, damit die Lichtgeschwindigkeit beibehalten werden konnte, während Lorenz vertrat, dass beide Felder gleichzeitig synchron maximal den Höhepunkt erreichen mussten, um diese Geschwindigkeit beibehalten zu können, wobei beide Interpretationen gleichermaßen mit den Gleichungen übereinstimmten. Zwei nicht weit zurückliegenden Durchbrüche erlauben es jedoch nun zu bestätigen, dass die Maxwell Interpretation richtig war, denn im Gegensatz zur Lorenz-Interpretation erlaubt sie es, die auf unserer makroskopischen Ebene so erfolgreich angewandte elektromagnetische Wellentheorie von Maxwell nahtlos mit den elektromagnetischen Eigenschaften, die auf subatomarer Ebene für lokalisierte elektromagnetische Photonen und für die lokalisierten geladenen und massiven elementaren elektromagnetischen Teilchen, aus denen alle Atome bestehen.


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