Integrating hidden information which is observed and the observer information regularities

نویسنده

  • Vladimir S. Lerner
چکیده

Vladimir S. Lerner, Marina Del Rey, CA 90292, USA, [email protected] Abstract The Bayesian integral functional measure of entropy-uncertainty on trajectories of Markov multi-dimensional diffusion process is cutting off by interactive impulses (controls) [1]. The entropy fractions, satisfying minimum of each cutoff maximum, evolve in microprocess, superimposing and entangling the conjugated fractions, which reduces the cutoff entropy and encloses the captured complimentary entropy fractions as a source of an information unit. The impulse step-up action launches the unit formation, while its step-down action finishes it and brings energy from the interactive jump. This finite jump transits from uncertain Yes-logic to certain-information No-logic, transferring the entangled entropy to the forming information unit whose measuring at the end of cutting action kills a final entropy-uncertainty. This control breaks down the entangled correlation that limits information of the unit and memorizes the unit by erasing it information, while spending an amount of energy brought with the control. The Yes-No logic holds Bit-Participator in its forming as elementary information observer analogous to Wheeler Bit created without any physical pre-law. The control opens access for potential interaction of each discreet information unit with environment and other units, whose entanglement or cooperation yields free information, collected prior to the units’ cooperation, which is freeing at decorellation. Binding two units in a doublet and cooperating its opposite directional information unit forms a triplet as a minimal cooperative stable structure. The information path functional (IPF) integrates the multiple information units of cooperating doublets-triplets, bound by the free information, in gradual information flow of a physical macroprocess. The macroprocesses, formed according to minimax, sequentially decreases the entropy and maximizes information by enfolding the sequence of enclosing triplet structures of the information network (IN). The IN couples the doublets in triplets while minimizing their bound free information and rising information forces that enfold the ordered sequence enables attracting new information unit by freeing the information. While the IPF collects these information units, the IN performs logical computing using the doublet-triplet code. Such operations with the entangled memorized information units, model a quantum computation. The operations with classical information units, cooperated from quantum information units that IN runs, model a classical computation. The IN different hierarchical levels unite logic of quantum microand macroinformation processes, composing quantum and/or classical computations. The observation minimax information law originates and integrates these regularities generating the information observer.

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تاریخ انتشار 2013