29 research outputs found

    High-Density Limit and Inflation of Matter

    Get PDF

    Quantum dynamics of the Stern-Gerlach (S-G) effect

    Get PDF

    Field theory methods in classical dynamics

    Get PDF

    Collapsing stage of bosonic matter

    Get PDF

    Cherenkov radiation near a dielectric medium at finite temperatures

    Get PDF

    Rigorous lower bounds for the ground state energy of matter

    Get PDF

    Speed dependent polarization correlations in QED

    Get PDF

    Cerenkov radiation in discontinuous media: a quantum view-point

    Get PDF

    Stability of matter in 2D

    Get PDF

    Spin Correlations in e+e−e^{+}e^{-} Pair Creation by Two-Photons and Entanglement in QED

    Full text link
    Spin correlations of e+e−e^{+}e^{-} pair productions of two colliding photons are investigated and explicit expressions for their corresponding probabilities are derived and found to be \textit{energy} (speed) dependent, for initially \textit{linearly} and \textit{circularly polarized} photons, different from those obtained by simply combining the spins of the relevant particles, for initially \textit{polarized} photons. These expressions also depend on the angles of spin of e+e^{+} (and/or of e−e^{-}), for initially {\it linearly polarized} photons, but not for {\it circularly polarized} photons, as a function of the energy. It is remarkable that these explicit results obtained from quantum field theory show a clear violation of Bell's inequality of Local Hidden Variables theories at all {\it energies} beyond that of the threshold one for particle production, in support of quantum field theory in the relativistic regime. We hope that our explicit expression will lead to experiments, of the type described in the bulk of this paper, which can monitor energy (and speed) in polarization correlation experiments.Comment: 12 pages, 4 figure
    corecore