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Implications of the quantum DNA model for information sciences

机译:量子DNA模型对信息科学的影响

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The DNA molecule can be modeled as a quantum logic processor, and this model has been supported by pilot research that experimentally demonstrated non-local communication between cells in separated cell cultures. This modeling and pilot research have important implications for information sciences, providing a potential architecture for quantum computing that operates at room temperature and is scalable to millions of qubits, and including the potential for an entanglement communication system based upon the quantum DNA architecture. Such a system could be used to provide non-local quantum key distribution that could not be blocked by any shielding or water depth, would be simultaneous over any distance, and could not be electromagnetically interfered with or eavesdropped upon. The quantum DNA model also has implications for artificial neural networks and can provide architecture for a system of quantum random number generation.
机译:DNA分子可以被建模为量子逻辑处理器,该模型得到了试验研究的支持,该研究通过实验证明了分离细胞培养物中细胞之间的非局部通信。 该建模和试验研究对信息科学具有重要意义,提供了在室温下运行的量子计算的潜在架构,并且可扩展到数百万码,并且包括基于量子DNA架构的缠结通信系统的电位。 这种系统可用于提供不被任何屏蔽或水深不能阻挡的非局部量子密钥分布,将同时在任何距离上,并且不能被电磁地干扰或窃听。 量子DNA模型还对人工神经网络具有影响,并且可以为量子随机数产生系统提供架构。

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