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Traveling-wave tube devices with nonlinear dielectric elements

机译:具有非线性介电元件的行波管器件

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The performance of traveling-wave tube (TWT) amplifiers incorporating nonlinear dielectric elements is studied via computer simulation. Two different situations are investigated: (1) the use of nonlinear dielectric elements to reduce intermodulation distortion and (2) the use of voltage-controlled dielectrics to provide rapid modification of the dispersion characteristics of the slow-wave structure. In the first case, the use of dielectrics with negative second-order susceptibilities is studied as a means of reducing phase and intermodulation distortion. Use of these dielectrics along with dynamic velocity taper to reduce amplitude modulation distortion results in marked reduction of predicted intermodulation distortion. In the second case, the goal is to design an amplifying structure whose gain as a function of frequency can be varied electrically. Preliminary design studies show that relatively large changes in the center frequency of the amplification band can be achieved with relatively modest changes in the dielectric constant of helix support structure.
机译:通过计算机仿真研究了包含非线性介电元件的行波管(TWT)放大器的性能。研究了两种不同的情况:(1)使用非线性介电元件来减少互调失真;(2)使用压控介电质来快速修改慢波结构的色散特性。在第一种情况下,研究了使用具有负二阶磁化率的电介质作为减少相位和互调失真的方法。将这些电介质与动态锥度一起使用以减少幅度调制失真会导致预测的互调失真显着降低。在第二种情况下,目标是设计一种放大结构,其增益随频率的变化可以电气改变。初步设计研究表明,通过螺旋支撑结构的介电常数相对适度的变化,可以实现放大带中心频率的较大变化。

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