弦上量子态的布朗运动与弦理论的波利亚可夫作用:弦理论是大脑的量子力学模型吗?

Amir Abbass Varshovi
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引用次数: 0

摘要

通过维纳分形度量研究了紧凑一维空间中若干量子态的布朗运动,结果表明,得出的路径积分度量恰好与玻色弦理论的波利亚科夫路径积分公式重合。因此,结论是玻色弦理论的波利亚科夫作用并不具有专门用于描述自然界基本力量的独特的、可区分的基础,而只是一维物体上量子态布朗运动的维纳随机过程的标准公式。研究还证明,时间维场实际上是坐标场非局部效应的局部化。这表明弦理论表述中对时空场的解释据称在其基础理论方面存在根本性缺陷。在这方面,我们将为弦理论辩护,使其不致因理论诠释不可靠而导致粒子物理学实验上的缺陷,并将其精心设计的数学框架与另一个重要课题联系起来:....
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brownian Motion of the Quantum States on a String and the Polyakov Action of String Theory: Is String Theory a Quantum Mechanical Model of the Brain?
The Brownian motion of a number of quantum states in a compact one-dimensional space is studied via the Wiener fractal measure, and it is shown that the derived path-integral measure coincides precisely with the Polyakov path-integral formula for bosonic string theory. Thus, it is concluded that the Polyakov action of bosonic string theory does not have a unique, distinguishable foundation specifically dedicated to describing the fundamental forces of nature, but rather, it is merely a standard formulation of the Wiener stochastic process for Brownian motion of the quantum states on one-dimensional objects. It is also demonstrated that the time-dimension field is, in practice, the localization of the non-local effects of the coordinate fields. This indicates that the interpretation intended for spacetime fields in the formulation of string theory allegedly faces fundamental flaws in its underlying theoretical aspects. In this regard, we will defend string theory against its experimental flaws in particle physics due to unreliable interpretation of the theory and relate its elaborated mathematical framework to another significant topic: Quantum Brain. ....
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