Transmission Spectrum of Photonic Crystal Quantum-well Sturcture for Realizable Odd-passage Filter
paper|更新时间:2020-08-12
|
Transmission Spectrum of Photonic Crystal Quantum-well Sturcture for Realizable Odd-passage Filter
Chinese Journal of LuminescenceVol. 30, Issue 3, Pages: 394-398(2009)
作者机构:
1. 河池学院 物理与电子工程系, 广西 宜州,546300
2. 广西大学 物理科学与工程技术学院,广西 南宁,530004
作者简介:
基金信息:
DOI:
CLC:O431;O437
Received:12 October 2008,
Revised:02 January 1900,
Published Online:30 June 2009,
Published:30 June 2009
稿件说明:
移动端阅览
SU An, GAO Ying-jun, JIAO Mei-na, et al. Transmission Spectrum of Photonic Crystal Quantum-well Sturcture for Realizable Odd-passage Filter[J]. Chinese journal of luminescence, 2009, 30(3): 394-398.
DOI:
SU An, GAO Ying-jun, JIAO Mei-na, et al. Transmission Spectrum of Photonic Crystal Quantum-well Sturcture for Realizable Odd-passage Filter[J]. Chinese journal of luminescence, 2009, 30(3): 394-398.DOI:
Transmission Spectrum of Photonic Crystal Quantum-well Sturcture for Realizable Odd-passage Filter
its transmission spectra is calculated and simulated by means of the transfer matrix method. At the central frequency of the reduced units 0.5(ωa/2πc)
when the transmission band of photonic crystal (CD)
n
is completely inside the band gap of photonic crystal (AB)
m
(BA)
m
both sharing the same central frequency as their symmetry centers
mirror symmetrical photonic quantum well is formed. At both sides of the central frequencies in the reduced units in the transmission spectra of the well
there are odd resonance-peaks
which symmetrically distributed and orderly localized
and form an obvious quantization effect for transmission-peak. The number and the location of the transmission peaks can be modulated by changing the number of period n of photonic crystal (CD)
<
em
>
n. This could be used for designing the adjustably odd-passage filters.
关键词
Keywords
references
. Yablonovitch E. Inhibited spontaneous emission in solid-state physics and electronics [J]. Phys. Rev. Lett., 1987, 58 (20):2059-2062.
. John S. Strong localization of photons in certain disordered dielectric superlattices [J]. Phys. Rev. Lett., 1987, 58 (23):2486-2489.
. Liu Dandong, Chen Guangde, Xu Zhongfeng. A switching mechanism based on photonic quantum-well effects [J]. Acta Photonica Sinica (光子学报), 2006, 35 (9):1321-1323 (in English).
. Hu Shuilong, Xu Xuming, Yu Tianbao. The single filtering and multiple channeled switchs in photonic quantum-well structures [J]. Acta Photonica Sinica (光子学报), 2004, 33 (8):1004-1005 (in Chinese).
. Chen Haibo, Gao Yingjun, Hu Sumei. Properties of mirror symmetrical photonic crystals of dielectric constant defect layer with imaginary part [J]. Chin. J. Lumin.(发光学报), 2008, 29 (2):233-235 (in Chinese).
. Esaki L, Tus R. superlattiee and negative differential conductivity semiconduetors [J]. IBMJ. Res. Dev., 1970, 14 (1):61-65.
. Mendez E E, Klitzing K V. Physies and Applications of Quantum Wells and Spuerlatitiees [M]. NATO ASI, New York,1987.
. Moussa R, Foteinopoulo U S, Zhang Lei, et al. Negative refraction and superlensing in a 2D photonic crystal structure [J]. Phys. Rev. B, 2005, 71 (8):085106-1-5.
. Yano S, Segawa Y, Bae J S, et al. Quantized state in a single quantum well structure of photonic crystals [J]. Phys. Rev. B, 2001, 63 (15):153316-1-4.
. Chen Xiaoshuang, Lu Wei, Shen S C. Photonic resonant transmission in the quantum-well structure of photonic crystals [J]. Solid State Commun., 2003, 127 (8):541-544.
. Liu Jing, Sun Junqiang, Huang Chongqing, et al. Improvement of resonant tunneling spectral character of two-dimensional quantum wells [J]. Chin. J. Lumin.(发光学报), 2007, 28 (3):325-329 (in Chinese).
. Wang Hui, Li Yongping. An eigen matrix method for obtaining the band structure of photonic crystals [J]. Acta Physica Sinica (物理学报), 2001, 50 (11):2172-2174 (in Chinese).
. Du Guiqiang, Liu Nianhua. Optical transmission spectra of one-dimensional photonic crystals with a mirror symmetry [J]. Acta Physica Sinica (物理学报), 2004, 53 (4):1905-1908 (in Chinese).
. Du Guiqiang, Liu Nianhua. Complete transmission and application of one-dimensional photonic crystals with multiple defects [J]. Acta Sinica Quantum Optica (量子光学学报), 2004, 10 (3):98-101 (in Chinese).
. Gao Yingjun, Wang Yuling. Transmission band of photonic crystals with a defect layer [J]. Physica Scripta, 2007, T129: 349-352.
. Tsu R, Esaki L. Tunneling in a finite superlattice [J]. Appl. Phys. Lett., 1973, 22 (11):562-564.
. Chang L L, Esaki L, Tsu R. Resonant tunneling in semiconductor double barriers [J]. Appl. Phys. Lett., 1974, 24 (12):593-595.
. Korol A M. Effect of scattering in the potential harriers on the tunneling transparency of a disordered supperlattice [J].Phys. Rev. B, 1994, 50 (4):2661-2662.
. Geng Jiguo, Shi Zonghua, Yan Kezhu. Study of band gap structure of photonic crystals with two defects [J]. J. Optoelectronics·Laser (光电子·激光), 2006, 17 (12):1497-1500 (in Chinese).
. An Liping, Liu Nianhua. The interaction between two defects in one-dimensional photonic crystals [J]. Journal of Nanchang University(Natural Science)(南昌大学学报,自然科学版), 2002, 26 (4):337-340 (in Chinese).
. Liu Jing, Huang Chongqing, Sun Junqiang, et al. Spectral splitting in multiple quantum well structures composed of photonic crystals [J]. Chinese Journal of Quantum Electronics (量子电子学报), 2008, 25 (2):203-207 (in Chinese).