We numerically and experimentally demonstrate a broadband single-mode hollow substrate integrated waveguide using one-dimensional photonic crystal as sidewalls in place of metallic via holes. By avoiding the vertical metallic walls, the waveguide can be easily fabricated as a photonic crystal structure on a single planar substrate sandwiched between two parallel metal plates. Such a hybrid flat waveguide can tightly confine the millimeter and terahertz waves in the low-loss air core. With the aid of the photonic crystal sidewalls, high-order competing modes in the waveguide are substantially suppressed based on the so-called modal-filtering effect, allowing the waveguide to be operated in a single-HE 01 -mode pattern over an octave bandwidt...
Cataloged from PDF version of article.We report the experimental demonstration of waveguides built a...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
We demonstrate an air-core single-mode hollow hybrid waveguide that uses Bragg reflector structures ...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Broadband, low‐loss, low‐dispersion propagation of terahertz pulses in compact waveguide chips is in...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Terahertz integrated platforms with high efficiency are crucial in a broad range of applications inc...
This work discusses both the theoretical and experimental guidance of low-loss single-mode millimetr...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
In this paper, a novel hollow substrate integrated waveguide (HSIW) is presented for realizing low-l...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
Cataloged from PDF version of article.We report the experimental demonstration of waveguides built a...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
We demonstrate an air-core single-mode hollow hybrid waveguide that uses Bragg reflector structures ...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Broadband, low‐loss, low‐dispersion propagation of terahertz pulses in compact waveguide chips is in...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Terahertz integrated platforms with high efficiency are crucial in a broad range of applications inc...
This work discusses both the theoretical and experimental guidance of low-loss single-mode millimetr...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
In this paper, a novel hollow substrate integrated waveguide (HSIW) is presented for realizing low-l...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
Cataloged from PDF version of article.We report the experimental demonstration of waveguides built a...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...