地球宇宙如何控制生物圈中的病毒:DNA、电离层微波和水

Avakyan Sv, Baranova La
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摘要

这篇论文的目的是表明,在2008年诺贝尔生理学奖得主L. Montagnier的著作中观察到的现象,以及一些细菌和病毒(包括人类免疫缺陷病毒)的行为,可能与主要来自电离层的微波通量对含水复合物形成的影响有关。考虑到水分子中质子的高亲和力,考虑到一个众所周知的结合形成机制。在我们最近的论文中开发的方法是在复杂分子结构的超分子物理学框架内使用的。超分子物理学描述了一个在分子(原子-分子核心)之外发展的过程,在这个过程中,分子复合体的出射里德伯成分吸收了外部来源的电磁辐射,从而演变成复杂的形式(簇,缔合)。由于Rydberg电子轨道动量值的增加,配合物的稳定性增加,因为形成稳定中性团簇的概率增加,电子很少穿透到离子核。我们用j.m.提出的著名的超分子化学来类比。1987年诺贝尔化学奖得主莱恩。他还讨论了宇宙影响对生物体的信息交换和对环境刺激的反应的可能性。
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How does the Geocosmos Control the Viruses in Biosphere: DNA, Ionospheric Microwaves and Water
The goal of the paper was to show that the phenomena observed in the works of L. Montagnier, the Nobel laureate on physiology, 2008, with the behavior of some bacteria and viruses (including the Human Imunodeficiency Virus), may be related to the effect of microwave fluxes primarily of ionospheric origin, to formation of water-containing complexes. A well-known mechanism of associative formation is taken into account, taking into account the high affinity for the proton in water molecules. The approach developed in our recent papers is used within the framework of supramolecular physics of complex molecular structures. Supramolecular physics describes a processes developing outside the molecules (atomic-molecular cores) in whose evolution to the complex forms (clusters, associates) electromagnetic radiation of external origin absorbed by exited Rydberg components of molecular complex takes part. Due to increasing value of orbital momentum of Rydberg electrons the stability of the complex grows because probability for forming a stable neutral cluster becomes higher as the electron more seldom penetrates into the ion core. We use the analogy with well known supramolecular chemistry proposed by J.-M. Lehn, the Nobel laureate on chemistry, 1987. He also discussed a possibility of contribution of cosmic influence both to information exchange in living organism and reaction to the environmental stimuli.
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