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Hybrid grating reflectors: Origin of ultrabroad stopband

机译:混合光栅反射器:超宽带阻带的起源

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摘要

Hybrid grating (HG) reflectors with a high-refractive-index cap layer added onto a high contrast grating (HCG) provide a high reflectance close to 100% over a broader wavelength range than HCGs. The combination of a cap layer and a grating layer brings a strong Fabry-Perot (FP) resonance as well as a weak guided mode (GM) resonance. Most of the reflected power results from the FP resonance, while the GM resonance plays a key role in achieving a reflectance close to 100% as well as broadening the stopband. An HG sample with 7 InGaAlAs quantum wells included in the cap layer has been fabricated by directly wafer-bonding a III-V cap layer onto a Si grating layer. Its reflection property has been characterized. This heterogeneously integrated HG reflector may allow for a hybrid III-V on Si laser to be thermally efficient, which has promising prospects for silicon photonics light sources and high-speed operation.
机译:在高对比度光栅(HCG)上添加了高折射率覆盖层的混合光栅(HG)反射器在比HCG更大的波长范围内提供了接近100%的高反射率。盖层和光栅层的组合带来强法布里-珀罗(FP)共振和弱导模(GM)共振。大部分反射功率来自FP共振,而GM共振在实现接近100%的反射率以及加宽阻带方面起着关键作用。通过将III-V盖层直接晶片键合到Si光栅层上,可以制造出盖层中包含7个InGaAlAs量子阱的HG样品。其反射特性已被表征。这种异质集成的HG反射器可以使Si激光器上的混合III-V具有较高的热效率,这对于硅光子学光源和高速运行具有广阔的前景。

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