首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Impact of photonic crystals on LED light extraction efficiency: Approaches and limits to vertical structure designs
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Impact of photonic crystals on LED light extraction efficiency: Approaches and limits to vertical structure designs

机译:光子晶体对LED光提取效率的影响:垂直结构设计的方法和限制

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摘要

The enhancement of the extraction efficiency in light emitting diodes (LEDs) through the use of photonic crystals (PhCs) requires a structure design that optimizes the interaction of the guided modes with the PhCs. The main optimization parameters are related to the vertical structure of the LED, such as the thickness of layers, depth of the PhCs, position of the quantum wells as well as the PhC period and fill factor. We review the impact of the vertical design of different approaches of PhC LEDs through a theoretical and experimental standpoint, assessing quantitatively the competing mechanisms that act over each guided mode. Three approaches are described to overcome the main limitation of LEDs with surface PhCs, i.e. the insufficient interaction of low order guided modes with the PhCs. The introduction of an AlGaN confining layer in such structure is shown to be effective in extracting a fraction of the optical energy of low order modes; however, this approach is limited by the growth of the lattice mismatched AlGaN layer on GaN. The second approach, based on thin-film LEDs with PhCs, is limited by the presence of an absorbing reflective metal layer close to the guided modes that plays a major role in the competition between PhC extraction and metal dissipation. Finally, we demonstrate both experimentally and theoretically the superior extraction of the guided light in embedded PhC LEDs due to the higher interaction between all optical modes and the PhCs, which resulted in a close to unity extraction efficiency for this device. The use of high-resolution angle-resolved measurements to experimentally determine the PhC extraction parameters was an essential tool for corroborating the theoretical models and quantifying the competing absorption and extraction mechanisms in LEDs.
机译:通过使用光子晶体(PhC)来提高发光二极管(LED)的提取效率,需要进行结构设计,以优化引导模式与PhC的相互作用。主要的优化参数与LED的垂直结构有关,例如层的厚度,PhC的深度,量子阱的位置以及PhC周期和填充因子。我们通过理论和实验的观点来回顾不同方法的PhC LED的垂直设计的影响,并定量评估作用于每种引导模式的竞争机制。描述了三种方法来克服具有表面PhC的LED的主要局限性,即低阶引导模式与PhC的相互作用不足。在这种结构中引入AlGaN限制层可有效地提取一部分低阶模式的光能;但是,这种方法受到GaN上晶格失配的AlGaN层生长的限制。第二种方法基于具有PhC的薄膜LED,其局限性在于靠近引导模式的吸收性反射金属层的存在,该层在PhC提取和金属耗散之间的竞争中起着重要作用。最后,由于所有光学模式和PhC之间的较高相互作用,我们在实验和理论上都证明了嵌入式PhC LED中引导光的优异提取,从而使该设备的提取效率接近统一。使用高分辨率角度分辨测量值来实验确定PhC提取参数,是证实理论模型并量化LED中竞争性吸收和提取机制的重要工具。

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