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Raoul Nakhmanson

Publications and source records attributed to Raoul Nakhmanson.

11 recordsLinked to original sources

Informational experiments with microparticles and atoms

Accepting information as a physical category and ascribing to inanimate matter some spirit (consciousness, intelligence) allows to explain quantum-mechanical phenomena, including delayed-choice and EPR-Bohm-Bell experiments, as well as irreversibility of time, remaining on the basis of local realism, and suggest essentially new experiments with microparticles and atoms in which information plays the principal role.

physics.gen-ph

Schroedinger's cat in Einstein's box

Using the Einstein's boxes thought experiment, as well as EPR and Heisenberg's ones, the local-realistic hidden-variable interpretation of quantum mechanics is explained. The key hidden variable is the consciousness forecasting the future. It is supposed that atoms and particles are complex products of evolution.

physics.gen-ph

Quantum mechanics as a sociology of matter

Analogies between quantum mechanics and sociology lead to the hypothesis that quantum objects are complex products of evolution. Like biological objects they are able to receive, to work on, and to spread semantic information. In general meaning we can name it "consciousness". The important ability of consciousness is ability to predict future. Key words: Evolution, consciousness, information, quantum mechanics, EPR, decoherence.

quant-ph

Wavepacket and its collapse

The notions of wavepacket and collapse are discussed and a local-realistic interpretation of Berkeley experiment is done.

quant-ph

Mind-Body Interpretation of Quantum Mechanics

The wave-particle duality is a mind-body one. In the real 3D-space there exists only the particle, the wave exists in its consciousness. If there are many particles, their distribution in accordance with the wave function represents a real wave in real space. Many worlds, Schroedinger cat, etc., exist only as mental constructions. The "waves of matter" are non-material. Feynman et al. taught quantum world "is like neither". Alas, they forgot living matter.

physics.gen-ph

Classical teleportation

The examples of "classical teleportation" are done and discussed. Like "quantum ones" they are far away from the science-fiction prototype.

physics.gen-ph

Informational interpretation of quantum mechanics

Ascribing to inanimate matter a possibility to receive, work on and transfer information allows us to explain quantum-mechanical phenomena including "delayed-choice"- and "Einstein-Podolsky-Rosen (EPR)"-type experiments adhering to the basis of local realism, and to suggest essentially new experiments with microparticles and atoms in which information plays the principal role.

physics.gen-ph