Explaining the Mass of Leptons with Wave Structure Matter
Jeff Yee · 2013
The mass of leptons in the Standard Model has a strange sequence, increasing by orders of magnitude from ~2.2 eV for the lightest electron neutrino to 1.777 GeV for the sixth and largest lepton in the model, the tau electron. This paper details an equation that identifies the sequence and calculation for the mass of the six leptons in the Standard Model. Surprisingly, when identifying the sequence, the magic numbers that were found in the Periodic Table of Elements for the atomic structure are also apparent in the sequence for leptons. As a result, a new table structure for lepton categorization in the Standard Model is proposed in this paper. The creation of an equation to predict the lepton sequence and mass was derived from a new, Wave Matter Energy equation that is also proposed in this paper. The genesis of this equation is based on principles from Wave Structure Matter (WSM), proposed by Dr. Milo Wolff. In WSM, Wolff suggests that the electron is a standing wave of energy. One of the issues of WSM, however, is that it does not have an explanation for other particles found in the Standard Model, including the neutrino and other leptons. Perhaps the most important of these missing particles is the neutrino. If there is a fundamental particle that is responsible for wave generation, and responsible for creating other particles found in the Standard Model, the likeliest candidate would be the smallest and lightest particle – the neutrino. This research began with an assumption that the neutrino was the fundamental particle and that the electron, and