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Design Considerations for a 240-GHz Gyromonotron

机译:为240GHz戈洛尼替洛鲁罗伦设计考虑因素

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One of the most promising high-power, near-millimeter-wave (NMMW) sources at present is the cyclotron resonance maser (CRM), also known as the gyrotron. The attractiveness of this tube is due both to the high efficiency predicted for it theoretically [1] and to the remarkable performance of such tubes built by the Soviets. Examples of this performance are 1500 W cw at 9.9 mm [2] and 1.1 MW pulsed at 3 mm [3] with efficiencies around 10%. In a joint effort at the Harry Diamond Laboratories and the Naval Research Laboratory (NRL), a gyrotron oscillator, or gyromonotron, is being built which will have an output power at 240 GHz of about 3.5 kW with an overall efficiency of 13%. Figure 1 is a schematic of the overall layout of the device. The highly uniform axial magnetic field required for the CRM interaction is to be produced by a superconducting magnet system available at NRL. Since the maximum magnetic field produced by this magnet is 60 kG, the minimum possible cyclotron harmonic, S, and the one chosen, was 2.
机译:目前最有希望的高功率近毫米波(NMMW)源是回旋加速器共振态(CRM),也称为陀螺仪。该管的吸引力是由于理论上预测的高效率[1]以及由苏联建造的这些管的显着性能。该性能的实例是1500W CW,在9.9mm [2]和1.1兆瓦,在3mm [3],效率约为10%。在哈利钻石实验室和海军研究实验室(NRL)的联合努力中,正在建造陀螺振荡器或戈替诺,这将在240 GHz的输出功率为约3.5千瓦,整体效率为13%。图1是设备整体布局的示意图。 CRM相互作用所需的高度均匀的轴向磁场是通过在NR1处可用的超导磁体系统产生的。由于该磁铁产生的最大磁场为60千克,因此选择的最小活跃的回旋谐波,S和所选的最小活跃的谐波为2。

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