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Theoretical investigation of a free-electron maser operating with a TEM transmission line

机译:用TEM传输线操作的自由电子激射器的理论研究

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The possibility of using the transverse electric magnetic (TEM) transmission line in free-electron masers (FEM) is discussed. It is shown that at the centimeter and long-millimeter wavelengths such transmission lines allow one to combine the advantages of an open cavity and a waveguide-based resonator. A particular case of an FEM-based on the use of a shielded two-wire transmission line is investigated theoretically. A mathematical approach that allows one to calculate transmission-line parameters important to the FEM application is developed. It is based on the use of the integral equation technique and on a new representation of the Green function of the internal region of a circle, which was obtained in this paper. Numerical analysis of effective mode area, wave impedance, and attenuation constant was made for the odd TEM mode, which is excited in FEM operation. The FEM under research at Tel Aviv University was considered as an example. The frequency dependence of gain for an FEM operating in the linear regime was calculated. That the obtained gain value is much higher than the ohmic losses in the transmission line shows the possibility of using the TEM transmission line in this FEM.
机译:讨论了在自由电子激射器(FEM)中使用横向电磁(TEM)传输线的可能性。结果表明,在厘米和长毫米波长处,这种传输线使人们可以将开放腔和基于波导的谐振器的优点结合起来。理论上研究了基于FEM的特殊情况,该情况基于使用屏蔽的两线传输线。开发了一种数学方法,该方法可以计算对于FEM应用重要的传输线参数。它是基于积分方程技术的使用,并基于本文获得的圆形内部区域的格林函数的新表示形式。对奇数TEM模式进行了有效模式面积,波阻抗和衰减常数的数值分析,该模式在FEM操作中被激发。以特拉维夫大学正在研究的有限元法为例。计算了在线性状态下运行的FEM的增益频率依赖性。所获得的增益值远高于传输线中的欧姆损耗,这表明可以在此FEM中使用TEM传输线。

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