On the possibility of implementing a quantum entanglement distribution in a biosystem: Microtubules

IF 1.9 4区 生物学 Q2 BIOLOGY Biosystems Pub Date : 2024-08-28 DOI:10.1016/j.biosystems.2024.105320
Sergey E. Shirmovsky
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Abstract

The paper considers the possibility of implementing a quantum entanglement distribution in the cell microtubule. It has been shown that a quantum entanglement distribution proposed in the paper determines the process of quantum state teleportation through microtubule tryptophan chain. The work shows that the system of tryptophans in a microtubule essentially is a quantum network that consists of: spatially spaced nodes — tryptophans, quantum communication channels connecting tryptophans and qubits transmitted through these communication channels. The connection between the process of quantum teleportation in living nature and its classical analogue is discussed. The quantum protocol established in the work determines the possible principle of quantum information transmission in biosystems and also in the similar nanostructures.

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在生物系统中实现量子纠缠分布的可能性:微管
论文探讨了在细胞微管中实现量子纠缠分布的可能性。研究表明,论文中提出的量子纠缠分布决定了通过微管色氨酸链进行量子态远距离传输的过程。研究表明,微管中的色氨酸系统本质上是一个量子网络,由以下部分组成:空间间隔节点--色氨酸、连接色氨酸的量子通信通道以及通过这些通信通道传输的量子比特。本文讨论了生物界量子远距传输过程与其经典类似物之间的联系。工作中建立的量子协议确定了生物系统和类似纳米结构中量子信息传输的可能原理。
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来源期刊
Biosystems
Biosystems 生物-生物学
CiteScore
3.70
自引率
18.80%
发文量
129
审稿时长
34 days
期刊介绍: BioSystems encourages experimental, computational, and theoretical articles that link biology, evolutionary thinking, and the information processing sciences. The link areas form a circle that encompasses the fundamental nature of biological information processing, computational modeling of complex biological systems, evolutionary models of computation, the application of biological principles to the design of novel computing systems, and the use of biomolecular materials to synthesize artificial systems that capture essential principles of natural biological information processing.
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