首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Power Enhancement of a Small-Orbit Coaxial Cyclotron Autoresonance Maser (CARM) by Employing an External Radial Electrostatic Field
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Power Enhancement of a Small-Orbit Coaxial Cyclotron Autoresonance Maser (CARM) by Employing an External Radial Electrostatic Field

机译:通过使用外部径向静电场增强小轨道同轴回旋加速器自谐振Maser(CARM)的功率

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摘要

A proposal is presented to enhance the saturation power of a small-orbit coaxial cyclotron autoresonance maser (CARM) by employing an external electrostatic voltage. Nonlinear simulations show possible increase of 22% of the saturation power with high gain of 67 dB for a transverse electric mode at frequency of 140 GHz. Influences of initial parameters on the saturation power are simulated. It is found that due to the use of an external electrostatic field, saturation power of the wave is sensitive to the ratio of the transverse velocity to the axial velocity, as well as to the spread of the transverse velocity. The physical mechanism of the power enhancement may be that the radial force produced by the radial electrostatic field superposes an extra motion on the electron beam and thus causes an extra energy coupling between the electron beam and the radial electric component of the wave.
机译:提出了一种通过使用外部静电电压来增强小轨道同轴回旋加速器自谐振脉宽调制器(CARM)的饱和功率的提议。非线性仿真显示,对于频率为140 GHz的横向电模式,饱和功率可能会增加22%,具有67 dB的高增益。模拟了初始参数对饱和功率的影响。发现由于使用外部静电场,波的饱和功率对横向速度与轴向速度之比以及横向速度的扩展敏感。功率增强的物理机制可能是由径向静电场产生的径向力将额外的运动叠加在电子束上,从而导致电子束与波的径向电子分量之间发生额外的能量耦合。

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