This paper introduces a Zitterbewegung model of the electron by applying the principle of Occam's razor to the Maxwell's equations and by introducing a scalar component in the electromagnetic field. The aim is to explain, by using simple and intuitive concepts, the origin of the electric charge and the electromagnetic nature of mass and inertia. The Zitterbewegung model of the electron is also proposed as the best suited theoretical framework to study the structure of Ultra-Dense Deuterium (UDD), the origin of anomalous heat in metal-hydrogen systems and the possibility of existence of "super-chemical" aggregates at Compton scale.

Celani, F., Di Tommaso, A., Vassallo, G. (2017). The zitterbewegung interpretation of quantum mechanics as theoretical framework for ultra-dense deuterium and low energy nuclear reactions. JOURNAL OF CONDENSED MATTER NUCLEAR SCIENCE, 24, 32-41.

The zitterbewegung interpretation of quantum mechanics as theoretical framework for ultra-dense deuterium and low energy nuclear reactions

Di Tommaso, Antonino Oscar
Investigation
;
Vassallo, Giorgio
Conceptualization
2017-01-01

Abstract

This paper introduces a Zitterbewegung model of the electron by applying the principle of Occam's razor to the Maxwell's equations and by introducing a scalar component in the electromagnetic field. The aim is to explain, by using simple and intuitive concepts, the origin of the electric charge and the electromagnetic nature of mass and inertia. The Zitterbewegung model of the electron is also proposed as the best suited theoretical framework to study the structure of Ultra-Dense Deuterium (UDD), the origin of anomalous heat in metal-hydrogen systems and the possibility of existence of "super-chemical" aggregates at Compton scale.
2017
Settore FIS/02 - Fisica Teorica, Modelli E Metodi Matematici
Settore ING-IND/32 - Convertitori, Macchine E Azionamenti Elettrici
Settore ING-INF/05 - Sistemi Di Elaborazione Delle Informazioni
Celani, F., Di Tommaso, A., Vassallo, G. (2017). The zitterbewegung interpretation of quantum mechanics as theoretical framework for ultra-dense deuterium and low energy nuclear reactions. JOURNAL OF CONDENSED MATTER NUCLEAR SCIENCE, 24, 32-41.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/253152
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