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Control of light emission by 3D photonic crystals

机译:通过3D光子晶体控制发光

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Three-dimensional (3D) photonic crystals containing artificial point defects have been fabricated to emit light at optical communications wavelengths. They were constructed by stacking 0.7-micrometer-period gallium arsenide striped layers, resulting in a 3D "woodpile" photonic crystal. Indium-gallium arsenide-phosphide quantum-well layers emitting at a wavelength of 1.55 micrometers were incorporated in the center of the crystal. Samples having up to nine stacked layers were constructed, and artificial point-defect cavities of different sizes were formed in the light-emitting layer. Light emission was suppressed in the photonic crystal regions, whereas cavity modes were successfully observed at the point defects and were size dependent.
机译:包含人工点缺陷的三维(3D)光子晶体已经制造出来,可以以光通信波长发射光。它们是通过堆叠0.7微米周期的砷化镓条纹层构成的,从而形成3D“柴堆”光子晶体。在晶体的中心并入了以1.55微米的波长发射的砷化铟镓-磷化铟量子阱层。构造具有最多九个堆叠层的样品,并且在发光层中形成不同尺寸的人造点缺陷腔。在光子晶体区域中抑制了发光,而在点缺陷处成功地观察到了腔模,并且腔模与尺寸有​​关。

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