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Hybrid Transmission Line for ECRH in the Helically Symmetric Experiment

机译:螺旋对称实验中ECRH的混合传输线

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The HSX oversized, mode-converting ECRH transmission line has been upgraded to a hybrid system to increase launched microwave power and reduce electrical arcing. Filtering of high-order, spurious modes ensures efficient coupling to a Gaussian beam for optimal electron heating. A Vlasov mode converter and two phase-correcting ellipsoidal mirrors convert the TE02 gyrotron output mode to a symmetric, linearly polarized, microwave beam. A swappable twist reflector plate rotates beam polarization for 2nd-harmonic X-mode or fundamental O-mode ECRH. Long distances are traversed by coupling the beam to a dual-mode (TE11 + TM11), smooth, circular cross-section waveguide. This system has been successfully tested without arcing for 50 ms pulses and over 100 kW of launched power. Analysis of the microwave beam for 50 kW, 2 ms microwave pulses reveals agreement with predicted beam shapes at two beam locations. The new system has also demonstrated increased plasma stored energy for ECRH plasmas with equal launched power.
机译:HSX超大型,模式转换ECRH传输线已升级为混合系统,以增加发射的微波功率并减少电弧。高阶杂散模式的滤波可确保有效耦合至高斯光束,从而实现最佳电子加热。 Vlasov模式转换器和两个相位校正椭圆镜将TE02 回旋管的输出模式转换为对称的线性偏振微波束。可插拔的扭转反射器板可旋转光束偏振,以实现二次谐波X模式或基本O模式ECRH。通过将光束耦合到双模(TE11 + TM11 )光滑的圆形横截面波导,可以实现长距离传输。该系统已经成功测试了50毫秒的脉冲和100 kW以上的发射功率而没有电弧。对50 kW,2 ms微波脉冲的微波束的分析表明,与两个波束位置的预测波束形状一致。新系统还证明,在发射功率相等的情况下,用于ECRH等离子体的等离子体存储能量有所增加。

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