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Abstract—In this paper, we study the basic characteristics of a probe excitation to a parallel-plate dielectric waveguide (PPDW), and present design data and experimental results. A coaxial probe has been used in microstrip lines and rectangular waveguides. The present study shows that it is also an effective method to.
In this paper, transmission characteristics of the fundamental mode (TE10) of Parallel-Plate Dielectric Waveguide (PPDW) at 0.4-1.0 THz (1 THz = 1012 Hz) are studied. The investigation results show PPDW with virtually low attenuation and remarkable simple structure is a promising candidate as THz transmission medium.
In this paper, we study the basic characteristics of a probe excitation to a parallel-plate dielectric waveguide (PPDW), and present design data and experi.
Abstract: In this paper, transmission characteristics of the fundamental mode. (TE10) of Parallel-Plate Dielectric Waveguide (PPDW) at 0.4-1.0 THz (1 THz. = 1012 Hz) are studied. The investigation results show PPDW with virtually low attenuation and remarkable simple structure is a promising candidate as.
ECE 303 – Fall 2005 – Farhan Rana – Cornell University. TE Guided Modes in Parallel-Plate Metal Waveguides z o. µ ? x zkxk k z x i. ?. ? +. ?. = r zkxk k z x r. ?. ? +. = r i k r. Er. Hr r k r. Ei. Hi. ( ). (. ) zkj x o x z exk. Ey. rE. ?. > = sin. ?. 0 r r. Guided TE modes are TE-waves bouncing back and fourth between two metal plates and
In this paper, we present a rigorous analysis and experimental results of a coaxial to "parallel plate dielectric waveguide" transition. Coaxial probe has been used in microstrip lines and rectangular waveguides. The present study shows that it is also an effective method to excite the parallel-plate dielectric waveguide.
THz transmission characteristics of dielectric-filled (DF) metallic parallel-plate waveguides (PPWGs) are experimentally and theoretically investigated via the propagation of sub-ps THz pulses. It is found that a PPWG having a high-resistivity (>10 k? cm) ( > 10 k ? cm ) silicon filling can, in fact, exhibit a higher transmission
In this paper, we present a rigorous analysis and experimental results of a coaxial to `parallel plate dielectric waveguide' transition. Coaxial probe has been used in microstrip lines and rectangular waveguides. The present study shows that it is also an effective method to excite the parallel-plate dielectric waveguide.
For our Parallel Plate Dielectric Waveguide with Signal Line inserted (PPDWS) design, we are able to get an average loss of 0.46dB/mm at 0.8-1.4THz from ANSYS HFSS simulation. The return loss for input and output are better than -20dB at 0.8-1.7THz. Although it is designed for our future travelling wave amplifier, it can
Opt Express. 2010 Oct 11;18(21):21725-31. doi: 10.1364/OE.18.021725. A novel broadband coaxial probe to parallel plate dielectric waveguide transition at THz frequency. Ye L(1), Xu R, Wang Z, Lin W. Author information: (1)EHF Key Laboratory of Fundamental Science, University of Electronic Science and Technology of
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