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Theory of high-harmonic gyrotron oscillators with slotted cross-section structure

机译:开缝截面结构的高谐波回旋振子理论

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A linear-theory analysis of gyrotron oscillators with slotted cross section is used to calculate the net change in beam energy. In this formalism, geometric factors are clearly distinguished from the geometry-independent harmonic resonance terms due to the fundamental electron cyclotron maser and peniotron interactions. This separation of the interaction terms from the geometric factors simplifiers the physical analysis, and leads to a very compact form for the net change in beam energy. The theory is applied to slotted rectangular oscillators and to slotted cylindrical oscillators to show that a unified expression can be obtained for the start-oscillation condition. In sample applications of the theory, it is demonstrated that slots lower the start-oscillation condition in both cylindrical and rectangular geometries, and can lead to a decrease in this condition as harmonic number is increased in the rectangular geometry. It is also found that the peniotron interaction, which is easily identified in this formalism, may be very strong in slotted cavities.
机译:具有开槽横截面的回旋振荡器的线性理论分析用于计算束能量的净变化。在这种形式主义中,由于基本的电子回旋加速器主激射器和peniotron相互作用,几何因素与几何无关的谐波谐振项明显不同。相互作用项与几何因子的这种分离简化了物理分析,并导致了束能量净变化的非常紧凑的形式。该理论被应用于开槽矩形振荡器和开槽圆柱振荡器,以表明对于起始振荡条件可以获得统一的表达式。在该理论的示例应用中,证明了槽在圆柱和矩形几何形状中均降低了起始振荡条件,并且随着矩形几何形状中谐波次数的增加,槽缝会降低这种条件。还发现,在这种形式主义中容易确定的peniotron相互作用在缝隙型腔中可能非常强。

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