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Mixing effects in the crystallization of supercooled quantum binary liquids

机译:过冷量子二元液体结晶中的混合效应

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By means of Raman spectroscopy of liquid microjets, we have investigated the crystallization process of supercooled quantum liquid mixtures composed of parahydrogen (pH(2)) or orthodeuterium (oD(2)) diluted with small amounts of neon. We show that the introduction of the Ne impurities affects the crystallization kinetics in terms of a significant reduction of the measured pH(2) and oD(2) crystal growth rates, similarly to what found in our previous work on supercooled pH(2)-oD(2) liquid mixtures [Kuhnel et al., Phys. Rev. B 89, 180201(R) (2014)]. Our experimental results, in combination with path-integral simulations of the supercooled liquid mixtures, suggest in particular a correlation between the measured growth rates and the ratio of the effective particle sizes originating from quantum delocalization effects. We further show that the crystalline structure of the mixtures is also affected to a large extent by the presence of the Ne impurities, which likely initiate the freezing process through the formation of Ne-rich crystallites. (C) 2015 AIP Publishing LLC.
机译:通过液体微射流的拉曼光谱,我们研究了由稀氢(pH(2))或正十二指肠(oD(2))稀释的氖气组成的过冷量子液体混合物的结晶过程。我们表明,Ne杂质的引入会显着降低测得的pH(2)和oD(2)晶体的生长速率,从而影响结晶动力学,这与我们先前对过冷pH(2)的研究相似- oD(2)液体混合物[Kuhnel等,Phys。修订版B 89,180201(R)(2014)]。我们的实验结果,结合过冷液体混合物的路径积分模拟,特别表明了测得的生长速率与源自量子离域效应的有效粒径之比之间的相关性。我们进一步表明,混合物中的混合物的晶体结构在很大程度上还受到Ne杂质的存在的影响,Ne杂质可能通过富Ne的微晶的形成引发了冷冻过程。 (C)2015 AIP Publishing LLC。

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