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Sub-THz traveling wave amplifiers based on the double corrugated waveguide

机译:基于双波纹波导的亚太赫兹行波放大器

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摘要

Email Print Request Permissions Summary form only given. The importance of the sub-THz (0.1-1 THz) portion of the spectrum is recognized fundamental for many applications. In particular, the region around 0.22 THz is suitable for high data rate communications1 and imaging due the low atmospheric attenuation window. However, high power is needed in this frequency range to provide a reasonable length of the transmission path. Vacuum electron devices represent so far the only viable solution for relatively output power at those frequencies. Wideband Traveling Wave Tube Amplifiers (TWTAs) operating in the 0.22 THz range were demonstrated with relevant performance2. The high cost of TWTAs still prevents their wide market diffusion. The double corrugated waveguide (DCW) is a slow wave structure of easy fabrication and assembly. A TWT based on the DCW is presented as possible affordable approach3. A relative high output power (3.7W) over a wide bandwidth (20 GHz) centered at 0.23THz was demonstrated, with 13kV beam voltage and 30mA beam current. The wideband performance is related to the superposition of the beam line with the dispersion curve over a wide frequency region. The optimization of the DCW dimensions is then a crucial step to assure wideband amplification. A study on the definition of the widest synchronism region is proposed. The aim is to extend the region included between the lower and upper cutoff frequencies of the dispersion curve and to control the its slope, maintaining a low beam voltage and suitable values of interaction impedance and losses.
机译:仅提供“电子邮件打印请求权限摘要”表单。频谱的次THz(0.1-1 THz)部分的重要性已为许多应用所公认。特别是由于大气衰减窗口低,0.22 THz附近的区域适合于高数据速率通信1和成像。但是,在该频率范围内需要高功率以提供合理长度的传输路径。迄今为止,真空电子器件是在那些频率下相对输出功率的唯一可行解决方案。演示了在0.22 THz范围内工作的宽带行波管放大器(TWTA)2的性能。 TWTA的高成本仍然阻止了它们在市场上的广泛传播。双波纹波导(DCW)是一种易于制造和组装的慢波结构。提出了一种基于DCW的TWT作为可能的负担得起的方法3。演示了在以0.23THz为中心的宽带宽(20 GHz)上具有相对较高的输出功率(3.7W),束电压为13kV,束电流为30mA。宽带性能与光束线与色散曲线在较宽频率区域上的叠加有关。因此,DCW尺寸的优化是确保宽带放大的关键步骤。提出了对最宽同步区域的定义的研究。目的是扩展色散曲线的下截止频率和上截止频率之间的区域,并控制其斜率,保持低电子束电压以及合适的相互作用阻抗和损耗值。

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