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Passive mode-locking and generation of ultrashort pulses in electron oscillators with saturable absorber in the feedback loop

机译:反馈回路中具有饱和吸收器的电子振荡器的无源锁模和超短脉冲的产生

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A periodic train of powerful ultrashort microwave pulses can be generated in a two-section electron oscillators consisting of an amplifier and a saturable absorber installed in the feedback loop. This method of pulse formation is similar to the passive mode-locking effect well-known in the laser physics. In the electronic scheme, the wide class of amplifiers can be used including gyro-TWTs with an interaction space in the form of a multi-fold helically corrugated waveguide. As a saturable absorber we suggest to use the similar section in which the regime of Kompfner dip is realized by proper matching of parameters. It was experimentally demonstrated with using of a microwave magnetron as a source of the input signal.
机译:可以在两部分式电子振荡器中生成周期性的强大超短微波脉冲,该电子振荡器由安装在反馈环路中的放大器和可饱和吸收器组成。这种脉冲形成方法类似于激光物理学中众所周知的被动锁模效果。在电子方案中,可以使用各种放大器,包括具有相互作用空间的陀螺仪TWT,该相互作用空间为多层螺旋波纹波导的形式。作为可饱和的吸收体,我们建议使用相似的部分,其中通过适当地匹配参数来实现Kompfner倾角范围。通过使用微波磁控管作为输入信号源进行了实验证明。

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