Gyrokinetic Simulations of Short-Wavelength ITG Instability in the Presence of a Static Magnetic Island

Gyrokinetic Simulations of Short-Wavelength ITG Instability in the Presence of a Static Magnetic Island
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DOI:
10.1585/pfr.8.2403040
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发表时间:
2013-06
影响因子:
0.8
通讯作者:
Paul P. Hilscher;K. Imadera;Jiquan Li;Y. Kishimoto
Paul P. Hilscher;K. Imadera;Jiquan Li;Y. Kishimoto
中科院分区:
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文献类型:
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作者:
Paul P. Hilscher;K. Imadera;Jiquan Li;Y. Kishimoto

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研究了存在中尺度磁岛时剪切平板几何结构中的离子温度梯度(ITG)模不稳定性,重点关注短波区域($k_y\rho_i > 1$)。我们发现静态磁岛使径向模和极向模耦合,从而通过允许能量从不稳定模转移到稳定模起到稳定作用。然而,对于较大的磁岛宽度,短波ITG模变得强烈不稳定,并倾向于主导标准ITG模($k_y\rho_i \approx 0.5$)。本文提出了一个简化模型来理解这种不稳定机制。
The ion-temperature-gradient (ITG) mode instability in sheared slab geometry in the presence of a mesoscale magnetic island is investigated with a focus on the short-wavelength regime (kyρi > 1). We found that a static magnetic island causes radial and poloidal modes to couple and therefore plays a stabilizing role by allowing energy transfer from unstable modes to stable modes. However, for large island widths, the short-wavelength ITG mode becomes strongly destabilized and tends to dominate over the standard ITG mode (kyρi 0.5). A reduced model is proposed in this paper to understand this destabilization mechanism.