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超弱相互作用与生物时间方向。

Superweak interactions and the biological time direction.

作者信息

Garay A S

出版信息

Orig Life. 1978 Sep;9(1):1-5. doi: 10.1007/BF00929708.

Abstract

A hypothesis is proposed in qualitative terms, according to which left helical electrons in chiral molecules, and right helical electrons in oppositely chiral molecules have different internal timings. The basis of this hypothesis stems from two facts: (1) It has been observed that the decay processes caused by superweak interactions go slower if left helical electrons are produced compared to decay processes in which right helical positrons are produced. (2) The excited states of D and L molecules are not only parity transformed but time reversed pairs as well. Re-evaluation of many data makes the hypothesis likely. The significance of this hypothesis in the origin and evolution of life is apparent since life and evolution as a whole have a special time direction.

摘要

本文提出了一个定性假设,即手性分子中的左旋电子和对映手性分子中的右旋电子具有不同的内部时间节律。该假设基于两个事实:(1)据观察,与产生右旋正电子的衰变过程相比,产生左旋电子时由超弱相互作用引起的衰变过程进行得更慢。(2)D分子和L分子的激发态不仅是宇称变换对,也是时间反演对。对许多数据的重新评估使该假设具有可能性。由于生命和进化总体上具有特殊的时间方向,该假设在生命起源和进化中的意义显而易见。

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