论文标题

在谷川 - 瓦卡塔尼系统的三合会相互作用网络中的相位和振幅演变

Phase and amplitude evolution in the network of triadic interactions of the Hasegawa-Wakatani system

论文作者

Gürcan, Ö. D., Anderson, J., Moradi, S., Biancalani, A., Morel, P.

论文摘要

在融合设备中通常用作耗散漂移波的玩具模型的泽谷 - 瓦卡塔尼系统,并考虑了其三合会相互作用的相位和振幅动力学的考虑。据观察,单个谐振三合会可以通过三方相锁定饱和,其中,随着时间的时间增加,主模式之间的相位差异会收敛到恒定值。这允许系统具有大致恒定的振幅解。仅当其腿之一是区域波数时,非共鸣三合会才显示出相似的行为。但是,当包括对$ y $轴的原始三合会的额外三合会(反映)的反映时,所得三合会对的行为被证明更为复杂。特别是,发现涉及小径向波数(大型区域流)的三合会最终将其能量转移到亚域模式上,而该模式会呈指数增长,而那些涉及较大径向波数(小层次层流)的三合会倾向于发现稳定的混乱或限制周期状态(或降低衰减状态)(或降低到零)。为了研究连接的三合会网络中的动力学,考虑了一个网络公式,包括泵模式,以及许多区域和非区域亚辅助模式作为动力学系统。据观察,只有在连接大量三合会时,区域模式才显然显然成为主导。当纬向流以“集体平均场”为主时,模式之间的单个相互作用变得不那么重要,这与不均匀的波动图片一致。最后,讨论了有关相同参数的直接数值模拟的结果,并计算了各种形式的顺序参数。可以观察到,非线性相动态导致大型相速度随着直接数值模拟的量表的函数而变平。

Hasegawa-Wakatani system, commonly used as a toy model of dissipative drift waves in fusion devices is revisited with considerations of phase and amplitude dynamics of its triadic interactions. It is observed that a single resonant triad can saturate via three way phase locking where the phase differences between dominant modes converge to constant values as individual phases increase in time. This allows the system to have approximately constant amplitude solutions. Non-resonant triads show similar behavior only when one of its legs is a zonal wave number. However when an additional triad, which is a reflection of the original one with respect to the $y$ axis is included, the behavior of the resulting triad pair is shown to be more complex. In particular, it is found that triads involving small radial wave numbers (large scale zonal flows) end up transferring their energy to the subdominant mode which keeps growing exponentially, while those involving larger radial wave numbers (small scale zonal flows) tend to find steady chaotic or limit cycle states (or decay to zero). In order to study the dynamics in a connected network of triads, a network formulation is considered including a pump mode, and a number of zonal and non-zonal subdominant modes as a dynamical system. It was observed that the zonal modes become clearly dominant only when a large number of triads are connected. When the zonal flow becomes dominant as a 'collective mean field', individual interactions between modes become less important, which is consistent with the inhomogeneous wave-kinetic picture. Finally, the results of direct numerical simulation is discussed for the same parameters and various forms of the order parameter are computed. It is observed that nonlinear phase dynamics results in a flattening of the large scale phase velocity as a function of scale in direct numerical simulations.

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