首页> 外文会议>Integrated Optics and Optical Fibre Communications, 11th International Conference on, and 23rd European Conference on Optical Communications (Conf. Publ. No.: 448) >Analysis of polarization-independent large field-induced refractive index change without red shift of absorption edge in a strained five-step GaAs-InAlGaAs asymmetric coupled quantum well
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Analysis of polarization-independent large field-induced refractive index change without red shift of absorption edge in a strained five-step GaAs-InAlGaAs asymmetric coupled quantum well

机译:应变不连续的五步GaAs-InAlGaAs不对称耦合量子阱中偏振无关的大场致折射率变化而没有吸收边红移的分析

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摘要

A tensile-strained five-step asymmetric coupled quantum well (FACQW) structure is proposed for the first time for large field-induced refractive index change without polarization-dependence and red-shift of absorption edge. The refractive index change of strained FACQW is larger by one order of magnitude compared to that of rectangular quantum well and the difference of the refractive index changes of TE-mode and TM-mode is under 2% when the operation wavelength is apart from absorption edge.
机译:首次提出了一种张力应变的五步非对称耦合量子阱(FACQW)结构,以实现大的场致折射率变化,而没有偏振相关性和吸收边缘的红移。与矩形量子阱相比,应变FACQW的折射率变化大一个数量级,并且当工作波长远离吸收边缘时,TE模式和TM模式的折射率变化差异小于2%。 。

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