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Nonlinear second sound waves in superfluid helium: instabilities, turbulence and rogue waves

机译:超流氦中的非线性第二声波:不稳定性,湍流和流氓波

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摘要

Recent work on nonlinear second sound wave propagation and acoustic turbulence in superfluid He-4 is reviewed. Observations of direct and inverse turbulent energy cascades are described. The direct cascade arises due to the strong nonlinear dependence of the second sound wave velocity on its amplitude. The flux of energy injected at the driving frequency is transformed via successively higher harmonics until it is eventually attenuated by viscous dissipation at the short-wavelength edge of the spectrum. The onset of the inverse cascade occurs above a critical driving energy density, and it is accompanied by giant waves that constitute an acoustic analogue of the rogue waves that occasionally appear on the surface of the ocean. The theory of the phenomena is outlined and shown to be in good agreement with the experiments.
机译:综述了关于超流体He-4中非线性第二声波传播和声湍流的最新研究。描述了直接和反向湍流能级联的观测。直接级联的产生是由于第二声波速度对其振幅的强烈非线性依赖性。在驱动频率处注入的能量通量会通过依次更高的谐波进行转换,直到最终在光谱的短波长边缘被粘性耗散所衰减。反向叶栅的发生发生在临界驱动能量密度以上,并且伴随着巨大的波,这些波构成了偶尔出现在海洋表面上的流氓波的声学类似物。概述了现象的理论,并表明与实验非常吻合。

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