A repository & source of cutting edge news about emerging terahertz technology, it's commercialization & innovations in THz devices, quality & process control, medical diagnostics, security, astronomy, communications, applications in graphene, metamaterials, CMOS, compressive sensing, 3d printing, and the Internet of Nanothings. NOTHING POSTED IS INVESTMENT ADVICE! REPOSTED COPYRIGHT IS FOR EDUCATIONAL USE.
Showing posts with label Zaigao Chen. Show all posts
Showing posts with label Zaigao Chen. Show all posts
Tuesday, January 16, 2018
Abstract-Continuous-wave Y-band planar BWO with wide tunable bandwidth
Hongzhu Xi, Jianguo Wang, Zhaochang He, Gang Zhu, Yue Wang, Hao Wang, Zaigao Chen, Rong Li , Luwei Liu
https://www.nature.com/articles/s41598-017-18740-w
A high performance continuous-wave (CW) backward wave oscillator (BWO) with planar slow wave structure (SWS) and sheet electron beam in Y-band is presented in this paper. The mode selection is discussed by studying the dispersion curve of SWSs, distributions of the electric field, and particle-in-cell simulation results, showing that the designed BWO operates in the fundamental mode TM11. The planar SWSs are fabricated by using the UV-LIGA technology with the processing error less than 0.003 mm. The electron gun can provide the 2.5 mm × 0.14 mm sheet electron beam with maximum current density of 57 A/cm2 at the CW mode. Experimental results show that the developed BWO can operate in the fundamental mode TM11 and generate the state-of-art output power of 182 mW at the frequency of 0.3426 THz with a large frequency tuning range from 0.318 THz to 0.359 THz.
Tuesday, October 3, 2017
Abstract-Development of a novel overmoded sub-terahertz inclined coaxial clinotron with asymmetric mode suppressed
Zaigao Chen and Yue Wang
http://aip.scitation.org/doi/abs/10.1063/1.5004550
Overmoded coaxial high frequency structures can improve the power capacity of vacuum electron devices (VEDs) and make the fabrication and assembly of the devices easy in the terahertz band, but they also lead to mode competition and deleterious effect on the beam-wave interaction. The numerical investigation on the cold cavity characteristics indicates that the dispersion curve of the quasi-TEM mode almost overlaps with the dispersion curve of the high-order quasi-TE11 mode, and the 3-D numerical simulation results also illustrate that due to the mode competition, the quasi-TEM cannot be excited steadily in the VEDs with traditional coaxial SWSs with the available current density. In order to effectively suppress the mode competition of overmoded coaxial SWSs, novel inclined coaxial slow wave structures (SWSs) are proposed in this paper. As the overmoded ratio of the SWSs reaches 9.7, the 3D particle-in-cell simulation results indicate that this novel device can successfully produce the terahertz wave with the output power of 571 W at the operating frequency of 0.338 THz, and the frequency spectrum of the generated signal is very pure. The field distributions in the inclined coaxial SWSs illustrate that there is no asymmetric mode excited in the proposed device.
Subscribe to:
Posts (Atom)

