论文标题

Landau基本激发的分散关系和超氟$^4 $ He的热力学特性

The dispersion relation of Landau elementary excitations and the thermodynamic properties of superfluid $^4$He

论文作者

Godfrin, H., Beauvois, K., Sultan, A., Krotscheck, E., Dawidowski, J., Fak, B., Ollivier, J.

论文摘要

超级流体$^4 $的分散性关系$ε(k)$在非常低的温度下,从饱和的蒸气压到凝固,使用高磁盘中子散射光谱仪,配备了高空间分辨率检测器(10 $^5 $'PIXELS')。从非常低的波形向量到Pitaeskii高原的尽头,可以完全确定$ε(k)$。结果在整个波形范围与动态多体理论(DMBT)的预测相比有利。在低波向量,弥合超声数据和以前的中子测量之间的缝隙,从异常到正常分散的压力以及相位速度的特殊波形矢量依赖性的变化得到了准确的表征。热力学特性已经通过测量的分散曲线进行了分析计算,即开发Landau的模型。如果使用热力学一致的功率序列膨胀,则发现在直接热容量测量和计算出的特定热量之间,发现良好的一致性在0.85 k以下。还已经通过数值计算了热力学特性。在这种情况下,结果适用于高达1.3 K的极好精度,温度在该温度之上,分散关系本身就会依赖温度。

The dispersion relation $ε(k)$ of the elementary excitations of superfluid $^4$He has been measured at very low temperatures, from saturated vapor pressure up to solidification, using a high flux time-of-flight neutron scattering spectrometer equipped with a high spatial resolution detector (10$^5$ 'pixels'). A complete determination of $ε(k)$ is achieved, from very low wave-vectors up to the end of Pitaeskii's plateau. The results compare favorably in the whole the wave-vector range with the predictions of the dynamic many-body theory (DMBT). At low wave-vectors, bridging the gap between ultrasonic data and former neutron measurements, the evolution with the pressure from anomalous to normal dispersion, as well as the peculiar wave-vector dependence of the phase and group velocities, are accurately characterized. The thermodynamic properties have been calculated analytically, developing Landau's model, using the measured dispersion curve. A good agreement is found below 0.85 K between direct heat capacity measurements and the calculated specific heat, if thermodynamically consistent power series expansions are used. The thermodynamic properties have also been calculated numerically; in this case, the results are applicable with excellent accuracy up to 1.3 K, a temperature above which the dispersion relation itself becomes temperature dependent.

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