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Raman spectra from Symmetric Hydrogen Bonds in Water by High-intensity Laser-induced Breakdown

机译:高强度激光诱导的水中对称氢键的拉曼光谱

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摘要

Raman spectra of ice VII and X were investigated using strong plasma shockwave generated by laser-induced breakdown (LIB) in liquid water. Simultaneously, the occurrence of the hydrogen emission lines of 656 nm (Hα), 486 nm (Hβ), 434 nm (Hγ) and 410 nm (Hδ) was observed. At 5 × 1012 W/cm2 optical power density, the O-H symmetric stretching, translational and librational modes of ice VII and a single peak at 785 cm−1 appeared in the spectra. The band was assigned to the Raman-active O-O mode of the monomolecular phase, which was the symmetric hydrogen bond of cuprite ice X. The spectra indicated that ice VII and X structure were formed, as the trajectory of the strong plasma shockwave passes through the stable Pressure-Temperature range of ice VII and X. The shockwave temperature and pressure were calculated by the Grüneisen model.
机译:利用液态水中激光诱导击穿(LIB)产生的强等离子体冲击波研究了VII和X冰的拉曼光谱。同时,观察到出现了656 nm(Hα),486 nm(Hβ),434 nm(Hγ)和410 nm(Hδ)的氢发射谱线。在5×10 12 W / cm 2 的光功率密度下,冰VII的OH对称拉伸,平移和自由模态和785 cm −处的一个峰1 出现在光谱中。该谱带被分配给单分子相的拉曼活性OO模式,这是铜盐冰X的对称氢键。光谱表明,随着强等离子激波的轨迹穿过冰,VII和X结构形成了。 VII和X的冰的稳定压力-温度范围。冲击波的温度和压力由Grüneisen模型计算。

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