Introduction and some problems encountered in the construction of a relativistic quantum theory.- Relativistic Classical and Quantum Mechanics.- Spin, Statistics and Correlations.- Gauge Fields and Flavor Oscillations.- The Relativistic Action at a Distance Two Body Problem.- Experimental Consequences of Coherence in Time.- Scattering Theory and Resonances.- Some applications: The Electron Anomalous Moment, Invariant Berry Phases and the Spacetime Lattice.- Hamiltonian Map to Conformal Modification of Spacetime Metric: Kaluza-Klein and TeVeS.- Relativistic Classical and Quantum Statistical Mechanics, and Covariant Boltzmann Equation.
Introduction and some problems encountered in the construction of a relativistic quantum theory.- Relativistic Classical and Quantum Mechanics.- Spin, Statistics and Correlations.- Gauge Fields and Flavor Oscillations.- The Relativistic Action at a Distance Two Body Problem.- Experimental Consequences of Coherence in Time.- Scattering Theory and Resonances.- Some applications: The Electron Anomalous Moment, Invariant Berry Phases and the Spacetime Lattice.- Hamiltonian Map to Conformal Modification of Spacetime Metric: Kaluza-Klein and TeVeS.- Relativistic Classical and Quantum Statistical Mechanics, and Covariant Boltzmann Equation.
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"Relativistic Quantum Mechanics is highly recommended for such insight not only to all working theoretical and experimental physicists, but for any specialists interested in the eventual philosophical impact of a manifestly covariant quantum theory on the future of scientific advancement in general. This seminal work by Horwitz can perhaps lead the way towards this fresh understanding." (Donald Reed, Foundations of Physics, Vol. 47, 2017)
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