An Approach to an Element of Order Number Zero in the Periodic System

T. G. Gerlitz, W. Walden
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Abstract

The question for anti-particles is one of the most outstandingly difficult problems in physics. There were many successful attempts from researchers including models to find a suitable explanation for anti-matter appearing in atom and matter theory. Some examples show really to demonstrate anti-matter character as it reveals the Dirac ́s quantum mechanical formalism. Indeed, a series of those atoms are found by experiment. In addition some exotic sounding ones are theoretically predicted and proven by experiment as it is the Positronium. This atom is formed by an electron and a positron and seams really to represented particle and co-particle in one so that it can be considered its own anti-particle itself. Obviously, this construct besides other ideas can meet the requirement of negative states predicted by Dirac as it finally led to the discovery of the positron as well many decades ago. The consideration of negative states in atom physics and the aspect to involve that phenomena into the description of particles could also lead to an extension in the chemical periodic system similarly to arrive at boardering edges those could limit the chemical elements at one side by the Feynmanium and on the other a Positronium. In addition, this research is one of the main goals in elementary physics as it opens a way for interpretation of the Dirac ́s equation allowing or even demanding for negative states. Although, particles negative in electric charge or atoms reversed in the charges of nucleus and the surrounding electric clouds, respectively, still demonstrate positive in mass. As a consequence it stands the question wheather and how this requirement can be overcome to entirely obey the demands for negative states, because the mass in all those investigations remains positive and every atom found consists of real and positive matter. However, those suggestions are missing. The aim of the present study is to propose a model that becomes suitable to consider those facts, especially not to ignore a mass negative. In this investigation a theory is tried in a simple model that considers both states of matter together to arrive at an atomic system consisting of an electromagnetic wave. Since electromagnetic waves are that way a true phenomena as they do not appear in a rest-mass differing from zero and there are also no electric or magnetic interaction either, the simplest form of an atom is proposed in the result of a pure electromagnetic wave alone.
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周期系统中阶数为0的元素的一种方法
反粒子问题是物理学中最困难的问题之一。研究人员进行了许多成功的尝试,包括建立模型,为原子和物质理论中出现的反物质寻找合适的解释。一些例子确实证明了反物质的特性,因为它揭示了狄拉克的量子力学形式主义。事实上,一系列这样的原子是通过实验发现的。此外,由于是正电子,对一些奇异的探测现象进行了理论预测和实验验证。这个原子是由一个电子和一个正电子组成的,它看起来像是一个粒子和一个共粒子,所以它可以被认为是它自己的反粒子。显然,除了其他想法之外,这个结构可以满足狄拉克预测的负态的要求,因为它最终导致了几十年前正电子的发现。原子物理学中对负态的考虑,以及将这种现象纳入粒子描述的方面,也可能导致化学周期系统的延伸,类似地到达边界,这些边界可以限制化学元素在一边用费曼,在另一边用正电子。此外,这项研究是基础物理学的主要目标之一,因为它为解释允许甚至要求负状态的狄拉克方程开辟了一条道路。虽然粒子的电荷为负,原子的原子核和周围电云的电荷相反,但它们的质量仍然是正的。因此,问题就来了,是否以及怎样才能克服这个要求,从而完全服从负态的要求,因为在所有这些研究中,质量始终是正的,而所发现的每一个原子都是由实在的和正的物质构成的。然而,这些建议是缺失的。本研究的目的是提出一个适合考虑这些事实的模型,特别是不要忽视大量的负面因素。在这个研究中,一个理论是在一个简单的模型中尝试的,这个模型同时考虑了物质的两种状态,从而得出一个由电磁波组成的原子系统。由于电磁波是一种真实的现象,因为它们不会出现在静止质量与零不同的情况下,也没有电或磁的相互作用,所以原子的最简单形式被认为是纯电磁波单独产生的结果。
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