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Energy gain by an electron in the fundamental mode of a rectangular waveguide by microwave radiation

机译:在矩形波导的基本模式下,微波辐射通过电子获得的能量

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Energy gain by an electron during its motion in the field of a fundamental TE_(10) mode excited by a microwave in a rectangular waveguide is analysed. Expressions have been obtained for the fields of the mode, angle of deflection and the acceleration gradient of the electron, when it is injected along the direction of mode propagation. A 25keV electron gains an energy of 120.44keV when a microwave of intensity 10~(10)W m~(-2) at frequency 6GHz is employed to excite the mode in a waveguide of width 0.03 m and height 0.02 m. The effect of the microwave frequency and width of the waveguide is to decrease the electron energy gain for a fixed microwave intensity. However, higher acceleration gradients are obtained when the electron is injected with a larger energy.
机译:分析了在矩形波导中由微波激发的电子在基本TE_(10)模场中运动期间电子的能量增益。当沿着模式传播的方向注入电子时,已经获得了模式,偏转角和电子加速梯度的场表达式。当使用频率为6GHz的强度为10〜(10)W m〜(-2)的微波在宽0.03 m,高0.02 m的波导中激发模式时,25keV电子获得的能量为120.44keV。微波频率和波导宽度的影响是在固定的微波强度下降低电子能量增益。但是,当以更大的能量注入电子时,会获得更高的加速度梯度。

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