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Coaxial cavity gyrotron- recent experimental results

机译:同轴腔回旋管-最新实验结果

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The feasibility of fabrication of coaxial cavity gyrotrons with an output power up to 2 MW, continuous wave (CW) has been demonstrated and information necessary for a technical design has been obtained. Experiments with a gyrotron equipped with newly designed components-electron gun, cavity, RF output system-have been performed. In short pulses, a maximum radio frequency (RF) output power of 2.2 MW has been reached in stable operation. At the nominal output power of 1.5 MW an efficiency of 30% has been achieved. This has been enhanced to 48% in operation with a single-stage depressed collector. The stability of the coaxial insert has been measured to be within /spl plusmn/0.03 mm under operating conditions. The losses at the coaxial insert have been found to be about 0.1% of the RF output power. Investigations of the microwave stray radiation captured inside the tube have been performed with the following results: (1) the captured stray radiation due to diffraction losses is approximately uniformly distributed inside the mirror box; (2) about 8% of the captured microwave power is radiated through a relief window with 100-mm diameter in the used setup; and (3) the total amount of stray radiation has been found to be about 11% of the RF output power. Parasitic low-frequency oscillations have been successfully suppressed and stable operation has been achieved over a wide parameter range. Fast (/spl sim/0.1-ms) frequency tuning has been demonstrated by applying a rapid variable bias voltage at the coaxial insert. In particular, step frequency tuning by /spl plusmn/2.2 GHz due to switching from the nominal mode at 165 GHz to its azimuthal neighbors has been done and continuous tuning by up to 70 MHz within the bandwidth of the TE/sub 31,17/ mode has been performed.
机译:已经证明了制造功率高达2 MW连续波(CW)的同轴腔回旋管的可行性,并获得了技术设计所需的信息。用装有新设计的部件(电子枪,腔体,RF输出系统)的旋流器进行了实验。在短脉冲中,稳定运行时已达到2.2 MW的最大射频(RF)输出功率。在1.5 MW的额定输出功率下,已实现30%的效率。使用单级低压收集器时,该值已提高到48%。在工作条件下,同轴插件的稳定性经测量在/ spl plusmn / 0.03 mm以内。已经发现同轴插入件处的损耗约为RF输出功率的0.1%。对在管内捕获的微波杂散辐射进行了研究,结果如下:(1)由于衍射损耗而捕获的杂散辐射大致均匀地分布在镜盒内; (2)在所使用的装置中,约有8%的捕获微波功率通过直径为100 mm的安全窗辐射。 (3)已发现杂散辐射的总量约为RF输出功率的11%。成功地抑制了寄生低频振荡,并已在较宽的参数范围内实现了稳定的运行。通过在同轴插件上施加快速可变的偏置电压,已证明了快速(/ spl sim / 0.1-ms)频率调谐。尤其是,由于已经从165 GHz的标称模式切换到其方位邻域,因此已经执行了/ spl plusmn / 2.2 GHz的步进频率调谐,并且在TE / sub 31,17 /的带宽内连续调谐了高达70 MHz的频率。模式已执行。

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