Switch to: Citations

Add references

You must login to add references.
  1. (1 other version)Quantum Theory and Measurement.John Archibald Wheeler & Wojciech Hubert Zurek - 1985 - Philosophy of Science 52 (3):480-481.
    Download  
     
    Export citation  
     
    Bookmark   115 citations  
  • The Physical Basis of the Direction of Time.Heinz Dieter Zeh - 1989 - Springer.
    Download  
     
    Export citation  
     
    Bookmark   91 citations  
  • The Nature of Time.T. Gold & D. L. Schumacher - 1969 - British Journal for the Philosophy of Science 20 (1):88-89.
    Download  
     
    Export citation  
     
    Bookmark   16 citations  
  • (1 other version)On the Einstein Podolsky Rosen paradox.J. S. Bell - 2004 - In John Stewart Bell (ed.), Speakable and unspeakable in quantum mechanics: collected papers on quantum philosophy. New York: Cambridge University Press. pp. 14--21.
    Download  
     
    Export citation  
     
    Bookmark   611 citations  
  • Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
    Download  
     
    Export citation  
     
    Bookmark   770 citations  
  • (1 other version)Can Quantum-Mechanical Description of Physical Reality be Considered Complete?Niels Bohr - 1935 - Physical Review 48 (696--702):696--702.
    Download  
     
    Export citation  
     
    Bookmark   211 citations  
  • The Quantum Mechanics of Minds and Worlds.Jeffrey Alan Barrett - 1999 - Oxford, GB: Oxford University Press.
    Jeffrey Barrett presents the most comprehensive study yet of a problem that has puzzled physicists and philosophers since the 1930s.
    Download  
     
    Export citation  
     
    Bookmark   132 citations  
  • (2 other versions)Remarks on the mind-body question.Eugene P. Wigner - 1961 - In I. J. Good (ed.), The Scientist Speculates. Heineman.
    Download  
     
    Export citation  
     
    Bookmark   103 citations  
  • Review of L. S. Schulman: Time's Arrows and Quantum Measurement[REVIEW]Huw Price - 1998 - British Journal for the Philosophy of Science 49 (3):522-525.
    Download  
     
    Export citation  
     
    Bookmark   21 citations  
  • Black Hole Unitarity and Antipodal Entanglement.Gerard ’T. Hooft - 2016 - Foundations of Physics 46 (9):1185-1198.
    Hawking particles emitted by a black hole are usually found to have thermal spectra, if not exactly, then by a very good approximation. Here, we argue differently. It was discovered that spherical partial waves of in-going and out-going matter can be described by unitary evolution operators independently, which allows for studies of space-time properties that were not possible before. Unitarity dictates space-time, as seen by a distant observer, to be topologically non-trivial. Consequently, Hawking particles are only locally thermal, but globally (...)
    Download  
     
    Export citation  
     
    Bookmark   4 citations  
  • (1 other version)Quantum Theory and Measurement.J. A. Wheeler & W. H. Zurek - 1986 - Synthese 67 (3):527-530.
    Download  
     
    Export citation  
     
    Bookmark   175 citations  
  • The Free Will Theorem.John Conway & Simon Kochen - 2006 - Foundations of Physics 36 (10):1441-1473.
    On the basis of three physical axioms, we prove that if the choice of a particular type of spin 1 experiment is not a function of the information accessible to the experimenters, then its outcome is equally not a function of the information accessible to the particles. We show that this result is robust, and deduce that neither hidden variable theories nor mechanisms of the GRW type for wave function collapse can be made relativistic and causal. We also establish the (...)
    Download  
     
    Export citation  
     
    Bookmark   81 citations  
  • The Born Rule and Free Will.Ruth Kastner - unknown
    In the libertarian ``agent causation'' view of free will, free choices are attributable only to the choosing agent, as opposed to a specific cause or causes outside the agent. An often-repeated claim in the philosophical literature on free will is that agent causation necessarily implies lawlessness, and is therefore ``antiscientific." That claim is critiqued and it is argued, on the contrary, that the volitional powers of a free agent need not be viewed as anomic, specifically with regard to the quantum (...)
    Download  
     
    Export citation  
     
    Bookmark   2 citations  
  • The transactional interpretation of quantum mechanics.John G. Cramer - 1986 - Reviews of Modern Physics 58 (3):647-687.
    Copenhagen interpretation of quantum mechanics deals with these problems is reviewed. A new interpretation of the formalism of quantum mechanics, the transactional interpretation, is presented. The basic element of this interpretation is the transaction describing a quantum event as an exchange of advanced and retarded waves, as implied by the work of Wheeler and Feynman, Dirac, and others. The transactional interpretation is explicitly nonlocal and thereby consistent with recent tests of the Bell inequality, yet is relativistically invariant and fully causal. (...)
    Download  
     
    Export citation  
     
    Bookmark   127 citations  
  • Opposite arrows of time can reconcile relativity and nonlocality.Sheldon Goldstein - manuscript
    We present a quantum model for the motion of N point particles, implying nonlocal (i.e., superluminal) influences of external fields on the trajectories, that is nonetheless fully relativistic. In contrast to other models that have been proposed, this one involves no additional space-time structure as would be provided by a (possibly dynamical) foliation of space-time. This is achieved through the interplay of opposite microcausal and macrocausal (i.e., thermodynamic) arrows of time. PACS numbers 03.65.Ud; 03.65.Ta; 03.30.+p..
    Download  
     
    Export citation  
     
    Bookmark   12 citations