论文标题
硅酸盐中的局部波。我们从实验中知道什么?
Localized waves in silicates. What do we know from experiments?
论文作者
论文摘要
由于最新的评论了关于穆斯科特岛上孤立的局部浪潮的最新评论,称为Quodons,[FM Russell,Springer Ser。母校科学。 221(2015)3]有许多发展,特别是从实验的角度出发,发表在几个期刊上。在该评论中提出的突破性假设是,黑暗轨道在局部波动中移动的正电荷(由迅速颗粒传输或非线性局部波)产生,已通过麝香木和其他硅酸盐的实验证实。在本文中,我们回顾了实验结果,其中一些已经发表了,有些是新的,特别是电场的电荷转运现象,称为过导性。我们还将替代解释视为其他轨道的相变。我们还尝试描述已经确认Quodons能量和计算的数量级的数值模拟,以确定Quodons的电子和孔传输的更多特性
Since the latest review about solitary localized waves in muscovite, called quodons, [FM Russell, Springer Ser. Mater Sci. 221 (2015) 3] there have been many developments, specially from the point of view of experiments, published in several journals. The breakthrough hypothesis that was advanced in that review that dark tracks were produced by positive electrical charge moving in a localized wave, either transported by swift particles or by nonlinear localized waves, has been confirmed by experiments in muscovite and other silicates. In this paper we review the experimental results, some already published and some new, specially the phenomenon of charge transport without an electric field, called hyperconductivity. We also consider alternative explanations as phase transitions for other tracks. We also attempt to describe numerical simulations that have confirmed the order of magnitude of quodons energy and calculations underway to determine more properties of electron and hole transport by quodons