纳米器件与盒子中的细菌:经典电动力学与量子力学路径积分之间的对应关系

H. Nieto-Chaupis
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引用次数: 0

摘要

我们使用量子力学路径积分来描述细菌在一个受恒定电势限制的盒子里的空间动力学。虽然这种电位在某种程度上可以作为巨噬细胞的物理表征,但细菌的行为也是由杰克逊电位驱动的。通过这种方式,产生的排斥力或吸引力可能会驱动细菌的空间位移来完成运动和趋化性的任务。当细菌和抗菌肽在时空中处于随机斗争时,路径积分语言作为一种随机工具似乎是一种有趣的选择。此外,它是电动力学的补充,支持其在微生物领域内的使用。我们的混合方法被证明是精确的,误差约为3%。
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Nanodevices Versus Bacteria in a Box: The Correspondence between Classical Electrodynamics and the Quantum Mechanics Path Integral
We use the Quantum Mechanics path integral to describe bacteria spatial dynamics inside a box that that is limited by constant electric potentials. While this potential can be materialized to some extent of being a physical representation of macro-phage cell the bacteria behavior is also driven by the Jackson’s electric potential. In this manner, the resultant repulsive or attractive electric force might drive the spatial displacement of bacteria to accomplish the task of motility and chemotaxis. The path-integral language seen a stochastic tool appears as an interesting option to model bacteria and Antimicrobial peptides agents when both of them are in a random struggle in space-time. In addition its complementary to Electrodynamics support tits usage inside of the Microbiological territory. Our hybrid approach turns out to be precise with an error of order of 3%.
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