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Developments for collective Thomson scattering equipment with a sub-THz gyrotron in LHD

机译:LHD中具有亚太赫兹回旋管的集合汤姆森散射设备的开发

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Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS with a 303 GHz gyrotron is under way. Use of a sub-THz gyrotron expands the CTS-applicable region of plasma parameters. In LHD, sub-THz CTS can be applied to the high density operation region, plasmas with impurity hole, etc. Moreover, sub-THz CTS is expected to be free from ECE noise. Its “collective” use with 77 GHz and 154 GHz CTS will compose a powerful diagnostic system. A high power sub-THz gyrotron with a frequency of 303 GHz has been developed. Its maximum power is 320 kW. It oscillates in pulse mode and the maximum pulse width is around 100 μs, which is sufficient for use in CTS experiments. A whispering gallery mode TE_(22,2)was adopted for this gyrotron to avoid mode competition. Careful frequency measurement has proved purely single mode oscillation of the TE_(22,2)mode including turn-on and turn-off phases of the oscillation pulse. This is consistent with mode competition calculations taking account of a finite voltage rise time. A low loss transmission line is necessary for CTS. We have two possibilities. One is a new line with 1.25 inch corrugated waveguides that are optimized for the 300 GHz band. Transmission test with the 303 GHz gyrotron has been carried out and a sufficiently low loss coefficient has been confirmed. The other is to use an existing line with 3.5 inch corrugated waveguides for lower frequencies such as 77 GHz and 154 GHz. Transmission test has been carried out with the 303 GHz gyrotron and a sufficiently low loss coefficient has been confirmed also for 3.5 inch corrugated waveguides. An existing line with 3.5 inch corrugated waveguides will be used in the initial phase of 303 GHz CTS experiment.
机译:带有303 GHz回旋管的NIFS中大型螺旋装置(LHD)的汤姆逊散射(CTS)集合实验计划正在进行中。低于THz的回旋管的使用扩展了CTS适用的血浆参数范围。在LHD中,亚THz CTS可以应用于高密度工作区域,带有杂质孔的等离子体等。此外,亚THz CTS有望消除ECE噪声。它与77 GHz和154 GHz CTS的“集体”使用将构成一个功能强大的诊断系统。已经开发出具有303 GHz频率的高功率次THz回旋管。最大功率为320 kW。它以脉冲模式振荡,最大脉冲宽度约为100μs,足以用于CTS实验。为了避免模式竞争,该旋流器采用了耳语式TE_(22,2)模式。仔细的频率测量已证明TE_(22,2)模式的纯单模式振荡,包括振荡脉冲的开启和关闭相位。这与考虑到有限的电压上升时间的模式竞争计算是一致的。 CTS必须使用低损耗的传输线。我们有两种可能性。一种是带有1.25英寸波纹波导的新系列,该波纹波导针对300 GHz频段进行了优化。已经进行了303 GHz旋流器的传输测试,并确认了足够低的损耗系数。另一种方法是使用现有的带有3.5英寸波纹波导的生产线,以降低诸如77 GHz和154 GHz的频率。已经使用303 GHz的回旋管进行了传输测试,并且对于3.5英寸的波纹波导也已经确定了足够低的损耗系数。 303 GHz CTS实验的初始阶段将使用现有的带有3.5英寸波纹波导的生产线。

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