Showing posts with label Yu Xiao. Show all posts
Showing posts with label Yu Xiao. Show all posts

Tuesday, April 7, 2020

Abstract-Quad-band linear terahertz frequency conversion in time-varying metasurfaces


Ran Jia,  Li MeihaoYang FanHuang XinYang QiXie ShengyiYu Xiao

Fig. 2. Electric field distribution inside one super-unit cell for eight resonance…Fig. 1. Schematic and performance of the proposed metasurface

https://www.sciencedirect.com/science/article/abs/pii/S0030401820303345

In this Letter, a quad-band linear frequency conversion prototype is proposed and investigated in terahertz region based on a time-varying metasurface. The unit cell of the metasurface consists of four pairs of concentric split-ring resonators loaded with photoactive silicon. By changing the conductivity of photoactive silicon via optical pump, both static and time-varying metasurfaces are achieved and investigated. Numerical results show that the transmission spectrum of the static metasurface has four merged resonant frequencies at 0.49 THz, 0.58 THz, 0.71 THz, 0.81 THz respectively, and linear frequency conversion appears at these four frequencies under the modulation of time-varying metasurface. The conversion linearity is also verified by applying dual-band bandpass filters with different center frequency. The coefficients of determination are 0.98, 0.94, 0.87, 0.96 correspondingly. This prototype provides a new approach for realizing quad-band frequency conversion for ambient terahertz wave and has wide applications in terahertz imaging and communication systems.

Friday, May 11, 2018

Abstract-Analysis of a Novel Singlet and Its Application in THz Bandpass Filter Design


Yu Xiao, Peizhe Shan, Kaiqiang Zhu, Houjun Sun, Fan Yang

https://ieeexplore.ieee.org/document/8347148/

In this paper, a novel singlet based on TE301 mode resonant cavity is first introduced and analyzed. By using the mode cancelling between the dominant resonance and the spurious resonance, a transmission zero (TZ) is then produced. Furthermore, the position of TZ can be controlled properly by changing the dimensions of the resonant cavity. Based on the novel singlet, a fifth-order filter centered at 140 GHz with two TZs at 131 and 151 GHz has been presented and fabricated by conventional computer numerical control-metal-milling technology. The measured results are in excellent agreement with the simulated ones with a low insertion loss of 0.52 dB and a 3-dB bandwidth of 13 GHz. A high selectivity with a 40 dB outband rejection at 132 and 149 GHz is achieved.