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A theoretical model of multi-agent quantum computing

机译:多主体量子计算的理论模型

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The best design for practical quantum computing is one that emulates the multi-agent quantum logic function of natural biological systems. Such systems are theorized to be based upon a quantum gate formed by a nucleic acid Szilard engine (NASE) that converts Shannon entropy of encountered molecules into useful work of nucleic acid geometric reconfiguration. This theoretical mechanism is logically and thermodynamically reversible in this special case because it is literally constructed out of the (nucleic acid) information necessary for its function, thereby allowing the nucleic acid Szilard engine to function reversibly because, since the information by which it functions exists on both sides of the theoretical mechanism simultaneously, there would be no build-up of information within the theoretical mechanism, and therefore no irreversible thermodynamic energy cost would be necessary to erase information inside the mechanism. This symmetry breaking Szilard engine function is associated with emission and/or absorption of entangled photons that can provide quantum synchronization of other nucleic acid segments within and between cells. In this manner nucleic acids can be considered as a natural model of topological quantum computing in which the nonabelian interaction of genes can be represented within quantum knot/braid theory as anyon crosses determined by entropic loss or gain that leads to changes in nucleic acid covalent bond angles. This naturally occurring biological form of topological quantum computing can serve as a model for workable man-made multi-agent quantum computing systems
机译:实用的量子计算的最佳设计是一种模仿自然生物系统的多主体量子逻辑功能的设计。从理论上讲,此类系统基于由核酸Szilard引擎(NASE)形成的量子门,该量子门将遇到的分子的香农熵转化为有用的核酸几何构型。该理论机制在这种特殊情况下在逻辑上和热力学上是可逆的,因为它实际上是由功能所需的(核酸)信息构成的,因此,核酸Szilard引擎可以可逆地运行,因为,由于存在其运行所需要的信息同时在理论机构的两侧,理论机构内不会积累任何信息,因此,消除机理内的信息将不需要不可逆的热力学能量成本。这种对称性破坏Szilard引擎的功能与纠缠光子的发射和/或吸收有关,纠缠光子可以提供细胞内和细胞间其他核酸片段的量子同步。以这种方式,核酸可以被认为是拓扑量子计算的自然模型,其中基因的非阿贝尔相互作用可以在量子结/编织理论中表示为因熵损失或获得而导致核酸共价键变化的任意子交叉。角度。拓扑量子计算的这种自然存在的生物形式可以用作可行的人造多智能体量子计算系统的模型

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