首页> 外文期刊>The Journal of Chemical Physics >Isotropic Raman line shapes near gas-liquid critical points: The shift, width, and asymmetry of coupled and uncoupled states of fluid nitrogen
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Isotropic Raman line shapes near gas-liquid critical points: The shift, width, and asymmetry of coupled and uncoupled states of fluid nitrogen

机译:气液临界点附近的各向同性拉曼线形:液氮耦合态和非耦合态的位移,宽度和不对称性

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摘要

In order to improve the experimental database about the additional nonrotational broadening of vibrational line shapes observable when a simple fluid approaches its gas-liquid critical point, we improved the pioneering measurements of Clouter and Kiefte [for their own review see Phys. Rev. A33, 2749 (1986)] on the critical behavior of the polarized Raman line of fluid nitrogen by using the isotopic mixture (~(14)N_2)_(.975) - (~(14)N~(15)N)_(.025), giving special attention to the fact that the isotropic line shape of liquid N_2 (V-tilde approx = 2327 cm~(-1)) is affected by intermolecular vibrational resonance couplings. Using a highest-resolution double monochromator and modern CCD detection techniques, we were able to follow the temperature dependencies of the line shape parameters (i.e., shift, width, and asymmetry) of the coupled ~(14)N_2 and, depending on the S/N ratio available, of the uncoupled ~(14)N~(15)N in the range 45 K approx < T approx < 300K with up to mK resolution (1) in the #beta#-solid pahse, (2) in the coexisting liquid and gas phases, and (3) along the critical isochore. Comparing the line shifts of both isotopic species, clear evidence was found that vibrational resonance couplings are present in all dense phases studied, the line position v-tilde_0 being more density than temperature dependent. Additionally, the existence of (negative) cross correlations between resonant and nonresonant dephasing mechanisms has been confirmed by the change in sign observed for the small but non-negligible difference in the linewidths between coupled ~(14)N_2 and uncoupled ~(14)N~(15)N around 90 K. The #gamma#-shaped dependencies of the width parameters, observed when moving along the coexistence line through the critical point, T_(crit) = 126.192 K, and long the critical isochore, is much more evident in the line asymmetry than in the usually considered linewidth. Clear proof was found that, in accordance with theoretical predictions, the linewidth converges to a constant maximum value regardless if the critical point is reached along the coexistence line or along the critical isochore, i.e., it does not diverge approaching the critical temperature up to our closest value |T/T_(crit)-1| approx = 10~(-5).
机译:为了改善关于当简单的流体接近其气液临界点时可观察到的振动线形状的额外非旋转展宽的实验数据库,我们改进了Clouter和Kiefte的开创性测量方法[有关其综述,请参见Phys。 Rev. A33,2749(1986)],关于同位素氮混合物(〜(14)N_2)_(。975)-(〜(14)N〜(15)N _(。025),特别注意液体N_2的各向同性线形(V-tilde大约= 2327 cm〜(-1))受分子间振动共振耦合的影响。使用最高分辨率的双单色仪和现代CCD检测技术,我们能够跟踪耦合的〜(14)N_2线形参数(即,位移,宽度和不对称性)的温度依赖性,并且取决于S / N比值,在#β#-固体颗粒中,未耦合的〜(14)N〜(15)N在45 K约

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