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Inverse Magnetron Injection Gun for Megawatt Power, Sub-THz Gyrotron

机译:逆磁控管注入枪,兆瓦级功率,太赫兹回旋管

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Inverse magnetron injection gun (IMIG) provides several advantages over simple MIG especially in high-power, high-frequency gyrotron. Sub-millimeter (> 230 GHz), high-power (>= 1 MW) gyrotrons would be required in futuristic plasma fusion machines to fulfill the need of tens of megawatt RF power for electron cyclotron resonance heating. Here, in this paper, an IMIG is designed for 0.24-THz, 1-MW gyrotron. First, the tradeoff design equations and technical constraints are used to synthesize the electrodes geometry and electrical parameters of IMIG. This synthesized IMIG model is further simulated to finalize the design using electron trajectory code EGUN. Simultaneously, the magnet system including the auxiliary gun coils and superconducting magnets (SCM) is also designed and the obtained magnetic field profile is used in the IMIG simulations. In the case of high-power MIG, the suppression of the beam halo is a major design concern and analyzed critically in the present IMIG design. The shape of the modulating anode and main anode is optimized to make a beam halo shielding. This IMIG is designed for a very high-order mode (TE46,17) simple cylindrical cavity, which confines the range of the tolerance in the electron beam parameters. So, a detailed parametric and misalignment analysis is also performed with respect to the electron beam parameters, such as pitch factor, velocity spread, and guiding center radius spread. These parametric and misalignment analyses would be utter helpful in the fabrication, assembling and testing of the IMIG as well as gyrotron.
机译:逆磁控管注入枪(IMIG)与简单的MIG相比具有几个优点,特别是在大功率,高频回旋管中。未来的等离子体聚变机将需要亚毫米(> 230 GHz),大功率(> = 1 MW)的回旋管,以满足电子回旋加速器共振加热所需的数十兆瓦RF功率。在本文中,IMIG设计用于0.24-THz,1-MW的回旋管。首先,权衡设计方程和技术约束条件来综合IMIG的电极几何形状和电参数。使用电子轨迹代码EGUN进一步模拟该合成的IMIG模型,以最终确定设计。同时,还设计了包括辅助喷枪线圈和超导磁体(SCM)的磁体系统,并将所获得的磁场轮廓用于IMIG仿真。在大功率MIG的情况下,束晕的抑制是主要的设计问题,在当前的IMIG设计中进行了严格的分析。优化调制阳极和主阳极的形状以形成束晕屏蔽。该IMIG设计用于非常高阶模式(TE46,17)的简单圆柱腔,它限制了电子束参数的公差范围。因此,还针对电子束参数(例如俯仰因子,速度扩展和引导中心半径扩展)执行了详细的参数和失准分析。这些参数和失准分析将对IMIG以及回旋管的制造,组装和测试完全有帮助。

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