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Spectroscopic studies of nonequilibrium plasma generated by acoustic cavitation in aqueous solutions

机译:水溶液中声空化产生非醌等离子体的光谱研究

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Molecular emissions in multibubble sonoluminescence (MBSL) spectra offer a powerful experimental tool to probe the extreme conditions inside the cavitation bubbles. Emission spectra of OH(C~2Σ~+-A~2Σ~+), OH(A~2Σ~+-X~2Π) and NH(A~3Π-X~3Σ~-) systems revealed the formation of nonequilibrium plasma during multibubble cavitation in aqueous solutions saturated with noble gases. In nonequilibrium plasma, the electron temperature (T_e) exceeds the vibrational (T_v) and rotational (T_r) temperatures: T_e>T_v>T_r≈T_g, where gas temperature (T_g) is usually considered equal to T_r. Spectroscopic analysis highlighted two kinds of plasmas produced by acoustic cavitation. Weakly excited plasma is observed at low ultrasonic frequency (20 kHz) in the presence of Ar and characterized by near-Boltzmann behavior of OH(A~2Σ~+) and NH(A~3Π) species. On the other hand, strongly excited plasma is formed at high frequency ultrasound (200-1000 kHz) and in the presence of Ar or Xe and even at 20 kHz in the presence of Xe. In a strongly excited plasma, the relative population distribution of OH(A~2Σ~+) vibrational states deviates from Boltzmann equation. This type of nonequilibrium is created by vibration-vibration pumping (Treanor) mechanism. In general, spectroscopic study of MBSL allows to conclude that sonochemistry can be considered as a part of plasma chemistry.
机译:多博声发作(MBSL)光谱中的分子排放提供了一种强大的实验工具,可以探讨空化气泡内的极端条件。 OH(C〜2σ〜+ -a〜2σ〜+)的发射光谱,OH(a2σ〜+ -x〜2π)和NH(a〜3π-x〜3σ〜 - )系统显示出非纤维纤维等离子体的形成在饱和气体饱和溶液中的含水溶液中的多纤维空穴期间。在非醌等离子体中,电子温度(T_E)超过振动(T_V)和旋转(T_R)温度:T_E> T_V>T_R≈T_G,其中气体温度(T_G)通常认为等于T_R。光谱分析突出了声学空化产生的两种等离子体。在AR的存在下,在低超声波频率(20kHz)下观察到弱激发等离子体,其特征在于OH(A〜2σ〜+)和NH(A〜3π)物种的近螺栓坦行为。另一方面,在高频超声(200-1000kHz)和Xe存在下,在高频超声(200-1000 kHz)和甚至在20kHz时形成强烈兴奋的血浆。在强烈激发的等离子体中,OH(A〜2σ〜+)振动状态的相对群体分布偏离Boltzmann方程。通过振动振动泵(TreeNor)机构产生这种类型的非醌。通常,MBSL的光谱研究允许得出结论,多个化学可以被认为是血浆化学的一部分。

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