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多重散射理论对光子晶体量子阱结构光子共振透射的研究
引用本文:潘瑜 李志锋 陈效双. 多重散射理论对光子晶体量子阱结构光子共振透射的研究[J]. 红外与毫米波学报, 2006, 25(1): 17-21
作者姓名:潘瑜 李志锋 陈效双
作者单位:江苏技术师范学院计算机科学与技术系,江苏,常州,213001;中国科学院上海技术物理研究所红外物理国家重点实验室,上海,200083;中国科学院上海技术物理研究所红外物理国家重点实验室,上海,200083
基金项目:中国科学院资助项目;科技部科研项目
摘    要:用球面波展开的多重散射理论计算了光子量子阱的透射系数.光子量子阱由两层光子势垒之间夹置一层均匀介质构成,由于光子带隙的失配,类似于电子量子阱,形成所谓光子量子阱.对透射峰位置的计算结果表明某些光子态以量子化的形式存在,满足量子化频率关系.同时证明有限高的光子势垒在不同光子能级中起到不同的限制作用.共振峰的位置和数量可通过改变阱宽而实现人工调控,通过适当选择阱和垒的参数能够实现高质量的多通道滤波.对光子晶体耦合双量子阱的计算表明,当阱间的垒宽度增加时,两个模式的耦合减弱,模式分裂的间距减小.

关 键 词:量子光学  共振透射  多重散射理论  光子晶体  量子阱
文章编号:1001-9014(2006)01-0017-05
收稿时间:2005-05-23
修稿时间:2005-10-15

RESONANT TRANSMISSION PROPERTIES OF PHOTONIC QUANTUM,WELL STRUCTURES STUDIED BY MULTIPLE-SCATTERING THEORY
PAN Yu,LI Zhi-Feng,CHEN Xiao-Shuang. RESONANT TRANSMISSION PROPERTIES OF PHOTONIC QUANTUM,WELL STRUCTURES STUDIED BY MULTIPLE-SCATTERING THEORY[J]. Journal of Infrared and Millimeter Waves, 2006, 25(1): 17-21
Authors:PAN Yu  LI Zhi-Feng  CHEN Xiao-Shuang
Affiliation:1. Department of Computer Science and Technology, Jiangsu Teachers University of Technology, Changzhou 213001, China; 2. National Laboratory for Infrared Physics, Shanghai Institute of Technical Physics, China Academy of Sciences, Shanghai 20083, China
Abstract:The resonant transmission properties of a photonic quantum-well were studied by a spheric-wave expansion method in combination with multiple-scattering techniques.Similar to the electronic quantum wells the photonic quantum-well is constructed by sandwiching a uniform medium between two photonic barriers.The calculated resonant transmission peaks show that some photonic states exist in a quantized way,satisfying a quantized frequency relation.The finite photonic potential barrier plays different confining roles on the different photonic levels.By appropriately choosing the parameters of the well and barrier,a high-quality multichannel filtering can be achieved.The calculation in the coupled double photonic quantum-wells shows that the coupling between the modes in the two wells weakens with the widening of the barrier thickness,and the mode splitting becomes smaller.
Keywords:quantum optics  resonant transmission  multiple-scattering theory  photonic crystal  quantum wells
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