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[2014-07-01] Entropy logic theory and expanding horizons of consciousness(8)

events act between structural elements of substance (elementary particles). They are weak and strong interaction, gravitation and electromagnetism. Two of them – weak and strong interaction – are not able to be directly perceived in macroscopic sphere: they have just narrow ranges that are less than radius of atomic nucleus (10-8 cm). By contrast with this gravitation and electromagnetism due to endless range refer to our everyday empirical world. As all elementary particles possess both properties of particles and waves, we can consider interaction between particles either according to the theory of standard field as a consequence of interpenetration of their relevant fields or to the theory of quantum field as a result of exchange of the third virtual particle. With due account thereof we can gain vivid (but extremely simplified) insight of quantum mechanical processes inside material objects. Separate quantum particles constantly emit field quanta. Whether the later come across with a particle able to interact with them, then they are being absorbed by it and hand it over their energy and rotational impulse (spin). By means of medium – carrier – virtual particle – material objects are able to receiv e information from the environment and radiate actual information on the state of objects. The way, by which electron “processes” information contained in the spin of absorbed virtual particles and accumulates it in the form of discrete quantities, can be explained by the theory of quantum entropy logic proposed by Prof. Theodore van Hoven. In his theory T. van Hoven develops success of works by E. Vitchincsky and L. Beadley, in which in a single theory weak and strong interactions of elementary particles, electromagnetism and gravitation (nowadays known as absolute unity theory (AUT)) were united. Van Hoven pins the AUT theory with baryon asymmetry of the Universe. This work made large impression and caused a great deal of new researches, in which, in particular, a role of x-particles and other bosons was described in detail. By now conception of structure of baryons as component particles consisting of three “more elementary” particles – quarks (antibaryon consists of antiparticles – antiquarks, accordingy) become firmly established. In Van Hoven’s theory quarks and leptons (collective name of electron and neutrino) are considered on equal terms and can transform into each other. As a consequence, reaction with alternation of rotational impulse (spin) can be performed. C.G. Jung -38- Decay process takes place with formation of so called x-boson as well as other similar by properties vector (terminal) particles at the intermediate stage. For shot we will talk on x-bosons only; let me remind you that vector fields are the ones able to exist in any states of polarization. The simplest example is an electromagnetic field. Probability of this decay reaction is extremely doubtful. The point is that mass of quark is certainly less than the one of x-boson. Thus, this reaction does not take place in common (classical) sense of the word. Just some slight “swinging” of such level of vacuum liberty (resiliency) that corresponds to x-boson takes place. X-boson can decay by two ways – into antiquark and positron or into two quarks; anti-x can decay into quark and electron or two antiquarks, accordingly. Integrated probability of decay of x equals to integrated probability of decay of anti-x. But upon decay of x-boson more pairs of quarks than upon decay of the same quantity of anti-x pairs of antiquarks are being formed and less antiquarks and positrons than quarks and electrons upon decay of anti-x. It is essentially that x-decay takes place without balance and with some “procrastination”. Otherwise baryon asymmetry won’t be able to be formed by general theorems. Formation of baryon asymmetry implies global spontaneous symmetry breakdown for many properties of the space. Thus, there are huge areas (billions of light years) with space division of substance with positive and negative polarization and proper physical fields thereof conditioned by transfer of moment of rotational impulse (terminal fields) in the Univ erse. At the further stages of cosmological expansion of the Universe annihilation of antiquarks with quarks, then – merging of excess quarks into baryons takes place, and then excess electrons come into atom structures. This is the way of origin of the substance. Further development only proved van Hoven’s theory that includes so called quantum chromokinetics, i.e. dynamical theory of electromagnetic gravitational (entropic) interactions. According to this theory, upon decay reaction quarks are given additional level of liberty, conjugated with electromagnetic radiation of light spectrum, thus called as color. Quantum chromokinetics (abbreviation – QCD) is very successful in description of quantum- correlated interactions of hadrons. Its character is ability to retain quarks! They can not be extracted from baryons or mesons in the same way as electrons are being extracted from atoms. The reason is creation of some “chord” retaining quark with the force not reducible depending on distance. Some successes obtained upon researches of supersensitive channel of information transfer, were conditioned by scientific strategy based on conceptions of physical mechanisms of initial interaction of a field with some elementary structures acting as biological receptors being a part of nerve cells. In the opinion of O. Reiser, mechanism of signal detection can be conceived as a result of resonance interaction between fields generated by nerve cells of the cerebrum and hydrogen-helium plasma of the ambient space. In the scientist’s opinion, nerve cells of the cerebral cortex can be considered relatively to a stable aggregation of colloid structures of quantummechanical nature able to extract proper information using “Fourier transformation” and put it in good order and sufficiently represent it though a communicative (linguistic) language with the help of mechanism of wave encoding (modulation). In electrons of cortical nerve cells supersensitive information encoded in the spin in the form of discrete magnitudes transforms into analogous neuron impulses and is being processed into quasi-sensitive impressions like other information of sensory impressions. O. Reiser supposed that quantum spin states acting as information carrier are being realized at the atomic level in hydrogen bonds of protein. It was shown in works of Prof. Arthur T. Winfrey of Arizona University devoted to study of three-dimensional modes of distribution of electrochemical waves and executive centers in excitable mediums, that magnetohydrodynamic waves (Alphen waves) spreading at that in tissues cause rearrangement of nuclear configuration of macromolecules and influence on energy of nerve cells. In the opinion of G.Lashaet and A. Morrow the following principle lies in the heart of supersensitive perception: decomposition of spectrum lines of magnetic field conditioned by presence of nucleuses having their own magnetic moment. Seko Idzava of Nuclear Research laboratory of Nagasaki University (Japan) established that upon influence of weak electrical fields a whirl magnetic field appears inside the volume of nerve cells, their structures of different geometrical dimensions, not excluding dimensions of molecules. Upon certain alternation of wave functions of magnetic electrons of substances being in labile state (a state of instability both to strong and weak disturbances) a phase change of spins of magnetic electrons (spin re-orientation transfer) can occur in them. As a result of spin-spin interaction of nucleuses a hyperfine structure in spectra of magnetic field appears. As energy jumps in atoms are proportional to their ionization energy, then a role of receptors perceiving field changes can be successfully played by impurity atoms. Their distinctive feature is extremely low energy of ionization and long life-time.

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