The space-time formalism in description of quantum information object characteristic properties in the context of problem-solving of observable quantities soft measurements for CARD-systems VI-environments

I. V. Gerasimov, S. Kuzmin, N. Safiannikov
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引用次数: 2

Abstract

The purpose of this report is the presentation of an original approach for complementary modeling of quantum information objects (quantum circuits) in the virtual instruments environments (VI-environments). While doing the research work the algebraic-topological apparatus for identifying fractal-time structure of the observed signal based on physical phenomenology and p-adic metrics was used. The main result of the work is a new cognitive strategy of multidimensional methodological thinking, based on the following principles: modeling, diversification, complementarity, virtualization, tolerance, duality. The conclusions emphasize the relationship between asynchronous VI-environments ideology and Bergson's philosophy: the events produced by VI-environment components interaction, are objectively exist - they appear and disappear, simulating, thus, some continuous time flow.
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可观测量问题解决背景下量子信息对象特征属性描述的时空形式
本报告的目的是介绍一种在虚拟仪器环境(vi -环境)中对量子信息对象(量子电路)进行互补建模的原始方法。在进行研究工作时,使用了基于物理现象学和p进度量的代数拓扑装置来识别观测信号的分形时间结构。本研究的主要成果是基于建模、多样化、互补性、虚拟化、宽容、二元性等原则,提出了一种新的多维方法论思维认知策略。结论强调了异步的vi环境意识形态与柏格森哲学之间的关系:由vi环境组件相互作用而产生的事件,是客观存在的——它们出现又消失,从而模拟了某种连续的时间流。
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