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Featured researches published by M. Sorg.


Foundations of Physics | 2002

Exchange Degeneracy of Relativistic Two-Particle Quantum States

S. Rupp; S. Hunzinger; M. Sorg

The phenomenon of exchange degeneracy of 2-particle quantum states is studied in detail within the framework of Relativistic Schrödinger Theory (RST). In conventional quantum theory this kind of degeneracy refers to the circumstance that, under neglection of the interparticle interactions, symmetric and anti-symmetric 2-particle states have identical energy eigenvalues. However the analogous effect of RST degeneracy is rather related to the emergence of two types of mixtures (positive and negative) in connection with the vanishing or non-vanishing of certain components of the Hamiltonian (“exchange fields”). As a consequence, there arise two subcases of RST degeneracy: (i) mixture degeneracy through neglection of the exchange fields and (ii) exchange degeneracy through neglection of the mixture character of matter. The latter RST exchange degeneracy consists in the fact that the RST dynamics admits a certain set of pure-state solutions, as borderline case between positive and negative mixtures, and all these different solutions are generating the same physical situation, e.g., concerning mass eigenvalues and physical densities (of current and energy-momentum). The general results are exemplified by considering the 2-particle states for (scalar) Helium. Analogously as the conventional exchange degeneracy is broken (ortho- and para-Helium) by taking into account the interparticle interactions (e.g., Coulomb forces), the RST degeneracy is broken by simultaneously taking into account the mixture character of matter together with non-zero exchange fields.


Foundations of Physics | 2004

Quantum Entanglement in Relativistic Three-Particle Systems

P. Schust; M. Mattes; M. Sorg


Foundations of Physics | 2007

Two- and Three-Particle Systems in Relativistic Schrödinger Theory

T. Beck; M. Sorg


arXiv: Atomic Physics | 2006

Helium Multiplet Structure in Relativistic Schr\"odinger Theory

R. Graebeldinger; T. Beck; M. Mattes; M. Sorg


Foundations of Physics | 2005

Self-Energy and Action Principle in Relativistic Schrödinger Theory

P. Schust; F. Stary; M. Mattes; M. Sorg


arXiv: Atomic Physics | 2006

Relativistic Energy Levels of Para-Helium

R. Graebeldinger; P. Schust; M. Mattes; M. Sorg


arXiv: High Energy Physics - Theory | 2007

Positronium Groundstate in Relativistic Schroedinger Theory

T. Beck; M. Mattes; M. Sorg


arXiv: High Energy Physics - Theory | 2008

Exchange Interactions and Principle of Minimal Energy in Relativistic Schroedinger Theory

M. Mattes; M. Sorg


arXiv: High Energy Physics - Theory | 2007

Principle of Minimal Energy in Relativistic Schroedinger Theory

M. Mattes; M. Sorg


Foundations of Physics | 2006

Ortho- and Para-helium in Relativistic Schrödinger Theory

F. Stary; M. Sorg

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M. Mattes

University of Stuttgart

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P. Schust

University of Stuttgart

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T. Beck

University of Stuttgart

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F. Stary

University of Stuttgart

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M. Verschl

University of Stuttgart

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S. Hunzinger

University of Stuttgart

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S. Rupp

University of Stuttgart

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