作者: A. R. Phipps , A. J. MacLachlan , C. W. Robertson , A. W. Cross , A. D. R. Phelps
DOI: 10.1109/UCMMT.2016.7874023
关键词: Surface wave 、 Electromagnetic field 、 Three dimensional printing 、 3D printing 、 Electronic engineering 、 Dispersion (optics) 、 Dispersion engineering 、 Engineering 、 Terahertz radiation
摘要: To rapidly prototype novel mm-wave and THz sources there is a requirement to create intricate structures produce radiate electromagnetic fields. The motivation for this work improved electron-beam-driven, vacuum electronic sub-THz by exploiting dispersion engineering. Although such can be manufactured other techniques, additive manufacturing has proven quick, reliable cost-effective. This research allowing the prototyping of coherent sources.