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Quantum Cooperation

Axiomathes 21 (2):347-356 (2011)

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  1. Biological utilization of quantum nonlocality.Brian D. Josephson & Fotini Pallikari-Viras - 1991 - Foundations of Physics 21 (2):197-207.
    The perception of reality by biosystems is based on different, and in certain respects more effective, principles than those utilized by the more formal procedures of science. As a result, what appears as random pattern to the scientific method can be meaningful pattern to a living organism. The existence of this complementary perception of reality makes possible in principle effective use by organisms of the direct interconnections between spatially separated objects shown to exist in the work of J. S. Bell.
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  • Towards a Science of Consciousness.Stuart R. Hameroff, Alfred W. Kaszniak & Alwyn Scott (eds.) - 1996 - MIT Press.
    Toward a Science of Consciousness marks the first major gathering—a landmark event—devoted entirely to unlocking the mysteries of consciousness.
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  • Toward a Science of Consciousness: The First Tucson Discussions and Debates.Stuart R. Hameroff, Alfred W. Kaszniak & Alwyn Scott (eds.) - 1996 - MIT Press.
    Toward a Science of Consciousnessmarks the first major gathering -- a landmark event -- devoted entirely to unlocking the mysteries of consciousness.
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  • Orchestrated reduction of quantum coherence in brain microtubules: A model for consciousness.Stuart R. Hameroff & Roger Penrose - 1996 - In Stuart R. Hameroff, Alfred W. Kaszniak & A. C. Scott (eds.), Toward a Science of Consciousness. MIT Press.
  • Quantum computation in brain microtubules.Stuart R. Hameroff - 2002 - Physical Review E 65 (6):1869--1896.
    Proposals for quantum computation rely on superposed states implementing multiple computations simultaneously, in parallel, according to quantum linear superposition (e.g., Benioff, 1982; Feynman, 1986; Deutsch, 1985, Deutsch and Josza, 1992). In principle, quantum computation is capable of specific applications beyond the reach of classical computing (e.g., Shor, 1994). A number of technological systems aimed at realizing these proposals have been suggested and are being evaluated as possible substrates for quantum computers (e.g. trapped ions, electron spins, quantum dots, nuclear spins, etc., (...)
     
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