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Enhancement Mechanisms of Low Energy Nuclear Reactions

机译:低能核反应的增强机理

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摘要

The review of possible stimulation mechanisms of LENR (low energy nuclear reaction) is represented. We have concluded that transmutation of nuclei at low energies and excess heat are possible in the framework of the modern physical theory - the universal resonance synchronization principle [1] and based on its different enhancement mechanisms of reaction rates are responsible for these processes [2]. The excitation and ionization of atoms may play role as a trigger for LENR. Superlow energy of external fields may stimulate LENR [3]. Investigation of this phenomenon requires knowledge of different branches of science: nuclear and atomic physics, chemistry and electrochemistry, condensed matter and solid state physics,... The results of this research field can provide a new source of energy, substances and technologies. The puzzle of poor reproducibility of experimental data is due to the fact that LENR occurs in open systems and it is extremely sensitive to parameters of external fields and systems. Classical reproducibility principle should be reconsidered for LENR experiments. Poor reproducibility and unexplained results do not means that the experiment is wrong. Our main conclusions:
机译:代表对LENR(低能核反应)可能的刺激机制的综述。我们得出的结论是,在现代物理理论的框架内,低能原子核的heat变和多余的热量是可能的-普遍共振同步原理[1]并基于其不同的反应速率增强机制负责这些过程[2] 。原子的激发和电离可能起LENR的触发作用。外部场的超低能量可能会激发LENR [3]。对这种现象的研究需要了解不同科学领域的知识:核和原子物理学,化学和电化学,凝聚态物质和固态物理学,...该研究领域的成果可以提供新的能源,物质和技术来源。实验数据可重复性差的难题在于,LENR发生在开放系统中,并且对外部场和系统的参数极为敏感。 LENR实验应重新考虑经典的可重复性原理。可重复性差和无法解释的结果并不意味着实验是错误的。我们的主要结论:

著录项

  • 作者

    Gareev, F A; Zhidkova, I E;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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