Application of Shannon Entropy in the Construction of a Paraconsistent Model of the Atom

João Inácio da Silva Filho
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Abstract

In this work, we present a model of the atom that is based on a nonclassical logic called paraconsistent logic (PL), which has the main property of accepting the contradiction in logical interpretations without the conclusions being annulled. The proposed model is constructed with an extension of PL called paraconsistent annotated logic with annotation of two values (PAL2v), which is associated with an interlaced bilattice of four vertices. We use the logarithmic function of the Shannon entropy H(s) to construct the paraconsistent equations and thus adapt a probabilistic model for representations in quantum physics. Through analyses of the interlaced bilattice, comparative values are obtained for some of the phenomena and effects of quantum mechanics, such as superposition of states, quantum entanglement, wave functions, and equations that determine the energy levels of the layers of an atom. At the end of this article, we use the hydrogen atom as a basis of the representation of the PAL2v model, where the values of the energy levels in six orbital layers are obtained. As an example, we present a possible method of applying the PAL2v model to the use of Raman spectroscopy signals in the detection of lubricating mineral oil quality.
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香农熵在构造原子副一致模型中的应用
在这项工作中,我们提出了一个基于非经典逻辑的原子模型,称为副一致逻辑(PL),其主要特性是接受逻辑解释中的矛盾,而不会取消结论。提出的模型是用PL的扩展构造的,称为带两个值注释的准一致注释逻辑(PAL2v),它与四个顶点的交错双格相关联。我们使用香农熵H(s)的对数函数来构建准一致方程,从而适应量子物理中的概率模型。通过对交错双晶格的分析,得到了一些量子力学现象和效应的比较值,如态叠加、量子纠缠、波函数和决定原子层能级的方程。在本文的最后,我们以氢原子作为表示PAL2v模型的基础,得到了六个轨道层的能级值。作为一个例子,我们提出了一种将PAL2v模型应用于拉曼光谱信号在润滑矿物油质量检测中的可能方法。
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