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DYNAMIC SPECIFIC HEAT OF A SUPERCOOLED LIQUID

机译:过冷液体的动态比热

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The dynamic specific heat C-p(nu) and thermal conductivity, kappa, of the simple glass-forming liquid di-n-butylphthalate are measured over a wide frequency range (4 mHz-8 kHz) by a nonadiabatic ac technique due to Birge and Nagel. The relaxation frequency obtained from the specific heat is found to be non-Arrhenius down to the lowest temperatures attained in this measurement. The temperature dependence of the relaxation frequency is in close agreement with that obtained from shear modulus and dielectric susceptibility measurements indicating that all motions in the supercooled liquid are strongly coupled to one another. The shape of the relaxation spectrum changes with temperature. The width of the relaxation is similar to that of the dynamic specific heat of other supercooled liquids. The thermal conductivity is frequency independent through the calorimetric glass transition. The static specific heat is reported over a wide range in temperature extending up to 100 K above the melting point. Mo evidence is found for thermodynamic anomalies accompanying the proposed formation of spatial inhomogeneities in the liquid, The high frequency relaxation shape exhibits a power law which crosses over to a weaker frequency dependence as seen in the dielectric response. (C) 1996 American Institute of Physics. [References: 52]
机译:简单的玻璃形成液体邻苯二甲酸二正丁酯的动态比热Cp(nu)和导热系数kappa是通过非绝热ac技术在较宽的频率范围(4 mHz-8 kHz)上测量的,这归因于Birge和Nagel 。发现从比热获得的弛豫频率在此测量中达到的最低温度下为非阿累尼乌斯。弛豫频率的温度相关性与从剪切模量和介电敏感性测量获得的密切相关,表明过冷液体中的所有运动都相互紧密耦合。弛豫谱的形状随温度变化。弛豫的宽度类似于其他过冷液体的动态比热的宽度。通过量热玻璃化转变,热导率与频率无关。据报道,在比熔点高出100 K的温度范围内,静态比热都很大。发现了伴随拟在液体中形成空间不均匀性的热力学异常的证据。高频弛豫形状表现出幂定律,该幂定律越过较弱的频率依赖性,如介电响应中所示。 (C)1996年美国物理研究所。 [参考:52]

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