Lan Feng
University of Electronic Science and Technology of China
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Publication
Featured researches published by Lan Feng.
Chinese Physics B | 2010
Qi Li-Mei; Yang Ziqiang; Lan Feng; Gao Xi; Li Da-Zhi
This paper studies dispersion characteristics of the transverse magnetic (TM) mode for two-dimensional unmagnetized dielectric plasma photonic crystal by a modified plane wave method. First, the cutoff behaviour is made clear by using the Maxwell–Garnett effective medium theory, and the influences of dielectric filling factor and dielectric constant on effective plasma frequency are analysed. Moreover, the occurence of large gaps in dielectric plasma photonic crystal is demonstrated by comparing the skin depth with the lattice constant, and the influence of plasma frequency on the first three gaps is also studied. Finally, by using the particle-in-cell simulation method, a transmission curve in the Γ – X direction is obtained in dielectric plasma photonic crystal, which is in accordance with the dispersion curves calculated by the modified plane wave method, and the large gap between the transmission points of 27 GHz and 47 GHz is explained by comparing the electric field patterns in particle-in-cell simulation.
Chinese Physics B | 2009
Gao Xi; Yang Ziqiang; Qi Li-Mei; Lan Feng; Shi Zongjun; Li Da-Zhi; Liang Zheng
This paper presents a three-dimensional particle-in-cell (PIC) simulation of a Ka-band relativistic Cherenkov source with a slow wave structure (SWS) consisting of metal photonic band gap (PBG) structures. In the simulation, a perfect match layer boundary is employed to absorb passing band modes supported by the PBG lattice with an artificial metal boundary. The simulated axial field distributions in the cross section and surface of the SWS demonstrate that the device operates in the vicinity of the π point of a TM01-like mode. The Fourier transformation spectra of the axial fields as functions of time and space show that only a single frequency appears at 36.27 GHz, which is in good agreement with that of the intersection of the dispersion curve with the slow space charge wave generated on the beam. The simulation results demonstrate that the SWS has good mode selectivity.
Chinese Physics Letters | 2015
Wu Qian-Nan; Lan Feng; Tang Xiaopin; Yang Zi-Qiang
A modified double-split ring resonator and a modified triple-split ring resonator, which offer polarization-insensitive performance, are investigated, designed and fabricated. By displacing the two gaps of the conventional double-split ring resonator away from the center, the second resonant frequency for the 0° polarized wave and the resonant frequency for the 90° polarized wave become increasingly close to each other until they are finally identical. Theoretical and experimental results show that the modified double-split ring resonator and the modified triple-split ring resonator are insensitive to different polarized waves and show strong resonant frequency dips near 433 and 444 GHz, respectively. The results of this work suggest new opportunities for the investigation and design of polarization-dependent terahertz devices based on split ring resonators.
Archive | 2014
Lan Feng; Yang Ziqiang; Shi Zongjun
Archive | 2011
Lan Feng; Yang Ziqiang; Shi Zongjun
Archive | 2010
Qi Li-Mei; Yang Ziqiang; Lan Feng; Gao Xi; Shi Zongjun; Liang Zheng
Archive | 2009
Gao Xi; Yang Ziqiang; Hou Jun; Qi Li-Mei; Lan Feng; Shi Zongjun; Li Da-Zhi; Liang Zheng
Archive | 2017
Lan Feng; Yang Ziqiang; Shi Zongjun
Archive | 2017
Lan Feng; Wu Xiaofang; Yang Ziqiang; Shi Zongjun
Archive | 2016
Lan Feng; Yang Ziqiang; Shi Zongjun; Li Meng