arXiv · physics/0508036
Lanczos - Einstein - Petiau: From Dirac's equation to nonlinear wave mechanics
Abstract
In 1929 Lanczos showed how to derive Dirac's equation from a more fundamental system that predicted that spin 1/2 particles should come in pairs. Today, these pairs can unambiguously be interpreted as isospin doublets. From the same fundamental equation, Lanczos derived also the correct form of the wave equation of massive spin 1 particles that would be rediscovered in 1936 by Proca. Lanczos's fundamental system was put in Lagrangian form and generalized in 1933 by Einstein and Mayer, who used the semivector instead of the quaternion formalism. Although they not did study all possible solutions, Einstein and Mayer showed that the doublets consisted of particles with different mass and charge. In fact, there are two main classes of doublets: proton/neutron and electron/neutrino pairs.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Andre Gsponer, Jean-Pierre Hurni. 2005-08-10. Lanczos - Einstein - Petiau: From Dirac's equation to nonlinear wave mechanics. https://arxiv.org/abs/physics/0508036
Cite the original work for its findings. Save a collection to share your selection of sources.