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Tuning of spontaneous emission of two-dimensional photonic crystal microcavities by accurate control of slab thickness

机译:通过精确控制平板厚度调节二维光子晶体微腔的自发发射

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摘要

We have found a blueshift in the cavity modes confined in two-dimensional photonic crystal microcavities when the thickness of the slab was varied uniformly by accurate dry etching. The shifts in the wavelength of the cavity modes were around 2 nm towards shorter wavelengths per nanometer reduced in the thickness of the slab. Three-dimensional plane wave expansion calculations showed that the observed shifts are inside the calculated photonic band gap of the structures. The variation in the energy position of the peaks with the thickness has been analyzed by three-dimensional finite difference time domain calculations for a one missing hole microcavity. This tuning of the emission wavelength with the change in the thickness slab shows the important effect of the third dimension in photonic crystals made out of semiconductor slabs and it can be of interest for its application in the final processed photonic devices like photonic crystal lasers.
机译:我们已经发现,当通过精确的干法刻蚀使平板的厚度均匀变化时,二维光子晶体微腔内的腔模会发生蓝移。腔模式的波长的偏移约为2nm,朝向平板厚度减小的每纳米较短的波长。三维平面波扩展计算表明,观察到的位移在结构的计算出的光子带隙之内。对于一个缺失的孔微腔,通过三维有限差分时域计算,分析了峰的能量位置随厚度的变化。随着厚度平板的变化,发射波长的这种调整显示了三维尺寸在由半导体平板制成的光子晶体中的重要作用,并且其在最终加工的光子器件(如光子晶体激光器)中的应用可能引起人们的兴趣。

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