研究目的
Investigating the performance of a terahertz band double staggered grating waveguide (DSGW) with an arc-shaped beam tunnel compared to a conventional DSGW with a linear-shaped beam tunnel.
研究成果
The novel DSGW SWS with an arc-shaped beam tunnel exhibited a better performance in comparison to the conventional DSGW SWS. The idea, fabrication techniques, and assembly methods were experimentally verified. Such a novel DSGW is a competitive SWS for SEB devices due to its high coupling impedance, broad bandwidth, and ease of processing.
研究不足
The fabrication and assembly of the SWS face a greater challenge as the size of the SWS scales down, which is one of the most significant factors for hindering the development of terahertz vacuum electron devices.
1:Experimental Design and Method Selection:
The design and analysis methods of the DSGW SWS were similar to the ones used in previous studies. The novel DSGW with an arc-shaped beam tunnel was compared to the conventional DSGW with a linear-shaped beam tunnel.
2:Sample Selection and Data Sources:
Simulations and cold tests were conducted on both types of DSGWs.
3:List of Experimental Equipment and Materials:
A CNC vertical machining center UVM-450C and a Sodick low-speed wire cutting machine (AP250Ls) were used for fabrication. A vector network analyzer (AV3672E) connecting with two frequency extenders (AV3649A) was used for cold testing.
4:Experimental Procedures and Operational Workflow:
The DSGW SWSs were fabricated using nano-CNC milling and wire cutting techniques. Their performances were cold tested using a vector network analyzer.
5:Data Analysis Methods:
The electromagnetic properties of the DSGW SWS cell were studied by using an eigenmode solver in the CST-MICROWAVE STUDIO.
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