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Hans-Peter Morsch

Publications and source records attributed to Hans-Peter Morsch.

3 recordsLinked to original sources

Explicit Bound State Description of Particles, Application to p-e- and e+-e- Systems

Based on a QED Lagrangian with additional photon-photon coupling an explicit bound state description is presented, attempting a physical correct and parameter free description of free particles. Applied to p-e- and e+-e- systems, with a "harmonic" boundary condition the deduced binding energies are consistent with Coulomb energies and radii in general agreement with other models. The sum of partial coupling strengths is in good agreement with alpha_QED sim 1/137, showing that this important constant can be deduced from first principles.

hep-ph

What is the Real Structure of Fundamental Forces?

Based on general considerations, the Standard Model of particle physics with its extensions (SM) can be ruled out as a valid theory of fundamental forces: it requires far too many parameters, which are not determined from first principles. The only way to uncover the real structure of elementary forces is to resort to a complete and fundamental theory without external parameters. This requirement is fulfilled in a finite theory, based on an extension of the QED Lagrangian by boson-boson coupling, with massless elementary fields, charged and neutral elementary fermions (quantons) and gauge bosons. In this description the observed bound states of nature, hadrons, leptons, atoms and gravitational objects are understood as stationary systems of quantons bound by electric or magnetic forces. Other fields do not exist.

hep-ph

Lepton bound states in a fundamental description of elementary forces

In the flavour dependence hadrons and leptons show a mass relation, not expected in the Standard Model. This can be understood in an analysis, based on a particle Lagrangian with Maxwell term, boson-boson coupling and massless fermions (quantons), in which hadrons are described as stationary systems of quantons bound by an electric interaction, whereas leptons represent systems bound magnetically.

physics.gen-ph