论文标题

在被捕获的玻色网凝结物中湍流演变过程中,体内的能量转移

Intra-scales energy transfer during the evolution of turbulence in a trapped Bose-Einstein condensate

论文作者

García-Orozco, Arnol Daniel, Madeira, Lucas, Galantucci, Luca, Barenghi, Carlo F., Bagnato, Vanderlei S.

论文摘要

在湍流现象中,包括超流体中的量子湍流,能量通量从大长度到小尺度流动,组成了一系列能量。湍流的普遍特征是能量通量不变的一系列尺度的存在:尺度的间隔通常称为惯性区域。该特性是基本的,例如,在经典流体的湍流中,它表征了统计特征(例如光谱和结构函数)的行为。在这里,我们还表明,在腐烂的bose-Einstein冷凝物(BEC)中产生的量子湍流(BEC),可以确定能量通量恒定的动量空间的间隔。实际上,我们提出了一种使用能量谱和连续性方程来测量能量通量的程序。然后,使用两个不同的协议确定通量恒定的范围范围,在同一范围内,测量的动量分布与以前的工作一致。在湍流BEC中成功识别具有恒定通量的区域是这些量子系统中湍流的普遍特征的表现。这些测量值铺平了在被困的原子超流体中进行节能和耗散的研究,以及与普通流体中发生的相关过程的类比。

In turbulence phenomena, including the quantum turbulence in superfluids, an energy flux flows from large to small length scales, composing a cascade of energy. A universal characteristic of turbulent flows is the existence of a range of scales where the energy flux is scale-invariant: this interval of scales is often referred to as inertial region. This property is fundamental as, for instance, in turbulence of classical fluids it characterizes the behavior of statistical features such as spectra and structure functions. Here we show that also in decaying quantum turbulence generated in trapped Bose-Einstein condensates (BECs), intervals of momentum space where the energy flux is constant can be identified. Indeed, we present a procedure to measure the energy flux using both the energy spectrum and the continuity equation. A range of scales where the flux is constant is then determined employing two distinct protocols and in the same range, the momentum distribution measured is consistent with previous work. The successful identification of a region with constant flux in turbulent BECs is a manifestation of the universal character of turbulence in these quantum systems. These measurements pave the way for studies of energy conservation and dissipation in trapped atomic superfluids, and also analogies with the related processes that take place in ordinary fluids.

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