太阳活动如何影响地球分子过程

V. K. Evstafyev
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引用次数: 4

摘要

本文提出了一个解决两个世纪以来太阳活动如何影响地球上的生物物体的问题。它描述了kt问题的现代状态,这个问题长期以来一直是解释太阳活动影响的最困难的障碍。根据自旋化学、磁塑性物理和临界条件物理学的最新进展,证明了对弱电磁场和相应的太阳射电发射敏感的“分子靶标”具有非平衡的自旋动力学,并且接近分层的下临界点。本文提出了一种方法,说明太阳活动如何通过地球大气在80Mhz频率上的“透明窗口”对包括生物在内的地球分子过程产生影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How Solar Activity Influences Earth's Molecular Processes
The paper presents a solution to the two-century old problem of how solar activity influences biological objects on Earth. It gives a description of the modern state of the kT-problem, which for a long time has been the most difficult obstacle in the way of explaining solar activity effects. Based on recent advances in spin chemistry, magnetoplasticity physics, and physics of critical conditions, it is shown that a "molecular target" sensitive to weak electromagnetic fields and corresponding radio emissions of the Sun has spin dynamics in non-equilibrium and is near the lower critical point of dividing into layers. A way is proposed as to how solar activity can have an influence on Earth's molecular, including biological, processes through a "transparency window" of the Earth's atmosphere at the 80Mhz frequency.
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