首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Electrically injected quantum dot photonic crystal microcavity light emitters and microcavity arrays
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Electrically injected quantum dot photonic crystal microcavity light emitters and microcavity arrays

机译:电注入量子点光子晶体微腔发光体和微腔阵列

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摘要

Progress in the design, fabrication and characterization of electrically injected photonic-crystal quantum-dot microcavity light sources is described. In the devices investigated in this study, the carriers are injected directly into the photonic crystal microcavity, avoiding the surface state recombination in the photonic crystal pattern. A novel and robust air-bridge contact technology is demonstrated. Spectral linewidths similar to 2-3 nm are observed from hexagonal microcavities of varying sizes in the output spectra of oxide-clad microcavity devices. Narrower linewidths similar to 1.3 nm are observed from air-clad devices. Results on arrays of densely packed oxide-clad photonic crystal microcavities are also presented. Spectral characteristics of oxide-clad and air-clad devices are compared.
机译:描述了电注入光子晶体量子点微腔光源的设计,制造和表征方面的进展。在这项研究中研究的器件中,将载流子直接注入光子晶体微腔中,避免了光子晶体图案中的表面态复合。展示了一种新颖而强大的气桥接触技术。在覆有氧化物的微腔装置的输出光谱中,从大小不同的六角形微腔中观察到了类似于2-3 nm的光谱线宽。从空气覆盖的设备中观察到更窄的线宽,类似于1.3 nm。还介绍了在密集堆积的氧化物包覆的光子晶体微腔阵列上的结果。比较了氧化物包覆和空气包覆器件的光谱特性。

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