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首页> 外文期刊>Physical Review, A >Ultraquantum turbulence in a quenched homogeneous Bose gas
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Ultraquantum turbulence in a quenched homogeneous Bose gas

机译:淬火均匀培养气体中的ultraquantum湍流

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Using the classical field method, we study numerically the characteristics and decay of the turbulent tangle of superfluid vortices which is created in the evolution of a Bose gas from highly nonequilibrium initial conditions. By analyzing the vortex line density, the energy spectrum, and the velocity correlation function, we determine that the turbulence resulting from this effective thermal quench lacks the coherent structures and the Kolmogorov scaling; these properties are typical of both ordinary classical fluids and of superfluid helium when driven by grids or propellers. Instead, thermal quench turbulence has properties akin to a random flow, more similar to another turbulent regime called ultraquantum turbulence, which has been observed in superfluid helium.
机译:使用经典的现场方法,我们研究了超流涡流的湍流缠结的特征和衰减,该特征和衰减在高度非单次初始条件下产生的血液气体的演变中产生。 通过分析涡旋线密度,能谱和速度相关函数,我们确定由这种有效的热淬火产生的湍流缺乏相干结构和Kolmogorov缩放; 当由网格或螺旋桨驱动时,这些性质是普通古典流体和超流氦的典型。 相反,热淬火湍流具有类似于随机流动的性质,更类似于称为超微脉冲湍流的另一个湍流状态,这已经在超流氦中观察到。

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