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Powerful multichannel planar FEMs based on intense parallel sheet beams

机译:基于强力平行平板梁的强大多通道平面有限元

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Novel schemes of powerful multichannel planar FEMs was developed in IAP RAS - BINP RAS collaboration based on two parallel sheet beams 0.8 MeV / 1 kA forming by the accelerator ELMI. In 75 GHz frequency band two-channel planar FEM with hybrid two-mirror resonator providing two-dimensional distributed feedback was elaborated. For record transverse size of interaction space (up to 45 × 2.5 wavelengths) synchronization of emission from both electron beams and realization of stable narrow-band generation have been demonstrated. As a result, spatially-coherent radiation with the output power of 30-50 MW and pulse duration of ~100 ns was obtained in this FEM in each channel. To advance powerful long-pulse FEM into THz frequency range original project of two-stage oscillator is under development at the ELMI accelerator. As a microwave system for such oscillator a ring cavity based on four Bragg deflectors has been proposed. Recent results of theoretical and experimental studies of this FEM scheme are presented.
机译:在IAP RAS-BINP RAS协作的基础上,基于加速器ELMI形成的两个平行薄板光束0.8 MeV / 1 kA,开发了功能强大的多通道平面FEM的新方案。在75 GHz频段,精心设计了带有混合二维反射镜谐振器的二维二维平面反馈有限元两通道平面FEM。为了记录相互作用空间的横向尺寸(最大45×2.5波长),已经证明了两个电子束的发射同步和稳定窄带生成的实现。结果,在每个通道中的此FEM中获得了具有30-50 MW输出功率和〜100 ns脉冲持续时间的空间相干辐射。为了将强大的长脉冲FEM提升到THz频率范围,ELMI加速器正在开发两级振荡器的原始项目。作为用于这种振荡器的微波系统,已经提出了基于四个布拉格偏转器的环形腔。提出了该有限元方案的理论和实验研究的最新结果。

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