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Enhanced stiffness weakening and confinement improvement by the linear electromagnetic effect in relatively high-q and low magnetic-shear plasmas

机译:相对高Q和低磁剪切等离子体中的线性电磁效应增强刚度弱化和限制

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摘要

The linear electromagnetic stabilizing effect on the toroidal ion temperature gradient (ITG) mode is usually believed to be weak when plasma beta is low. It is shown that this effect can be significant even in such a plasma if the safety-factor (q) profile is in the regime with relatively high q and low magnetic-shear values. Furthermore, this effect is found to induce the profile stiffness weakening by reducing the ITG growth rate slope. These results imply that the linear electromagnetic effect can be an important player for the strong confinement improvement or stiffness weakening observed in negative or optimized shear mode, which typically starts to occur from low beta plasmas.
机译:当等离子体β低时,通常认为对环形离子温度梯度(ITG)模式的线性电磁稳定效应通常被认为是弱的。结果表明,如果安全系数(Q)轮廓处于具有相对高的Q和低磁剪切值的状态,则这种效果即使在这样的等离子体中也可能很重要。此外,发现这种效果通过降低ITG生长速率斜率来诱导突壳刚度削弱。这些结果意味着线性电磁效果可以是在负或优化剪切模式下观察到的强大限制改善或刚度减弱的重要参与者,这通常开始发生从低β等离子体。

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