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Critical Velocity for Superfluid Turbulence at High Temperatures

机译:高温下超流湍流的临界速度

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In rotating superfluid ~(3)He-B, a sharp transition to turbulence which is insensitive to the fluid velocity is observed in contrast to classical turbulence. Instead, this transition is controlled by an intrinsic parameter, q (ident to) alpha/1 - alpha', of the superfluid, where alpha and alpha' are mutual friction parameters depending on temperature. However, rotating superfluid ~(3)He-B is the only system which shows this kind of transition, and many unsolved mysteries yet remain. Hence, we study numerically the quantum vortex dynamics in thermal (unidirectional) counter flow systems especially at high temperatures, with the goal of proposing a new system which also shows a turbulence transition controlled by q. It is shown that the critical velocity above which the system can sustain a vortex tangle increases sharply at q approx= 0.4. This means that no vortex tangle state can be stable for q (approx.>) 0.4. This may be closely relevant to the dramatic vortex dynamics transition caused by q in rotating superfluid ~(3)He-B.
机译:在旋转超流〜(3)He-B中,与经典的湍流相比,观察到对流体速度不敏感的湍流的急剧过渡。相反,这种转变由超流体的内在参数,Q(ident)alpha / 1 - alpha'控制,其中α和alpha'是根据温度的相互摩擦参数。然而,旋转超流〜(3)HE-B是唯一显示这种过渡的系统,以及许多未解决的谜团仍然存在。因此,我们在高温下以高温(单向)计数器流量系统的数量型量子涡流动力学研究,其目的是提出新系统,该系统还示出了由Q控制的湍流转变。结果表明,上述系统可以维持涡旋缠结的临界速度在Q约= 0.4时急剧增加。这意味着Q(约>)0.4没有涡旋缠结状态可以稳定。这可能与Q旋转超氟〜(3)He-B引起的急剧涡旋动力学过渡密切相关。

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