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首页> 外文期刊>The Journal of Chemical Physics >Coherent Rayleigh-Brillouin scattering measurements of bulk viscosity of polar and nonpolar gases, and kinetic theory
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Coherent Rayleigh-Brillouin scattering measurements of bulk viscosity of polar and nonpolar gases, and kinetic theory

机译:极性和非极性气体的整体粘度的相干瑞利-布里渊散射测量和动力学理论

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We investigate coherent Rayleigh-Brillouin spectroscopy as an efficient process to measure the bulk viscosity of gases at gigahertz frequencies. Scattered spectral distributions are measured using a Fizeau spectrometer. We discuss the statistical error due to the fluctuating mode structure of the used pump laser. Experiments were done for both polar and nonpolar gases and the bulk viscosity was obtained from the spectra using the Tenti S6 model. Results are compared to simple classical kinetic models of molecules with internal degrees of freedom. At the extremely high (gigahertz) frequencies of our experiment, most internal vibrational modes remain frozen and the bulk viscosity is dominated by the rotational degrees of freedom. Our measurements show that the molecular dipole moments have unexpectedly little influence on the bulk viscosity at room temperature and moderate pressure.
机译:我们研究相干瑞利-布里渊光谱法,以一种有效的方法来测量千兆赫兹频率下气体的整体粘度。使用Fizeau光谱仪测量散射光谱分布。我们讨论了由于所用泵浦激光器的波动模式结构引起的统计误差。对极性和非极性气体都进行了实验,使用Tenti S6模型从光谱中获得了整体粘度。将结果与具有内部自由度的分子的简单经典动力学模型进行比较。在我们实验的极高频率(千兆赫兹)下,大多数内部振动模式保持冻结状态,而整体粘度则由旋转自由度控制。我们的测量结果表明,在室温和中等压力下,分子偶极矩对体积粘度的影响很小。

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