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Weak-field H3O+ ion cyclotron resonance alters water refractive index

机译:弱场H3O +离子回旋共振改变水折射率

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Heretofore only observed in living systems, we report that weak-field ion cyclotron resonance (ICR) also occurs in inanimate matter. Weak magnetic field (50 nT) hydronium ICR at the field combination (7.84 Hz, 7.5 mu T) markedly changes water structure, as evidenced by finding an altered index of refraction exactly at this combined field. This observation utilizes a novel technique which measures the scattering of a He-Ne laser beam as the sample is exposed to a ramped magnetic field frequency. In addition to the hydronium resonance, we find evidence of ICR coupling to a more massive structure, possibly a tetrahedral combination of three waters and a single hydronium ion. To check our observations, we extended this technique to D2O, successfully predicting the specific ICR charge-to-mass ratio for D3O+ that alters the index of refraction.
机译:迄今为止在生活系统中观察到,我们报告说,弱现场离子回旋谐振(ICR)也发生在无生命物质中。 弱磁场(50nt)氢氧鎓ICR在现场组合(7.84Hz,7.5μT)显着改变水结构,如在该组合领域的完全折射率所示。 该观察利用一种新技术,该技术测量当样品暴露于斜坡磁场频率时,测量HE-NE激光束的散射。 除了散氢共振之外,我们发现ICR耦合到更巨大的结构,可能是三个水的四面体组合和单个散氢离子。 为了检查我们的观察,我们将该技术扩展到D2O,成功地预测D3O +的特定ICR充电质量比,其改变了折射率。

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