H. Brandt, Angelika Gräfin vom Hagen, S. Fabian, Mandy Ganske-Zapf, Gabriele Rommel, Manfredo Berger, Jana Tempelhoff, Katrin Moeller, Andreas Pohlus, Jörg Bruns, Katrin Gäde, Jörg Kurz, Mathias Tietke, Jana Mikota, M. Ahne, Anita Henneberger
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Abstract

We discuss the energy and vorticity spectra of turbulent superfluid 4 He in the entire temperature range from T = 0 up to the phase transition “ λ point”, T λ ≃ 2 . 17 K. Contrary to classical developed turbulence in which there are only two typical scales, i.e. the energy injection L and the dissipation scales η , here the quantization of vorticity introduces two additional scales, the vortex core radius a 0 and the mean vortex spacing ℓ . We present these spectra for the super- and the normal-fluid components in the entire range of scales from L to a 0 including the cross-over scale ℓ where the hydrodynamic eddy-cascade is replaced by the cascade of Kelvin waves on individual vortices. At this scale a bottleneck accumulation of the energy was found earlier at T = 0. We show that even very small mutual friction dramatically suppresses the bottleneck effect due to the dissipation of the Kelvin waves. Using our results for the spectra we estimate the Vinen “effective viscosity” ν ′ in the entire temperature range and show agreement with numerous experimental observation for ν ′ ( T ).
讨论了湍流超流体4he从T = 0到相变“λ点”T λ≃2的整个温度范围内的能量和涡度谱。17 K。与经典发达湍流只有两个典型尺度,即能量注入尺度L和耗散尺度η不同,这里的涡量量化引入了两个额外的尺度,涡核半径a 0和平均涡间距r。我们给出了从L到a 0的整个尺度范围内的超流体和正常流体分量的谱,包括交叉尺度,其中流体动力旋涡级联被单个涡上的开尔文波级联所取代。在这个尺度下,在T = 0时发现了能量的瓶颈积累。我们表明,即使非常小的相互摩擦也会由于开尔文波的耗散而显著抑制瓶颈效应。利用我们的光谱结果,我们估计了整个温度范围内的Vinen“有效粘度”ν ',并与ν ' (T)的大量实验观测结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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