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首页> 外文期刊>Scientific reports. >Hexagonal GaN nanorod-based photonic crystal slab as simultaneous yellow broadband reflector and blue emitter for phosphor-conversion white light emitting devices
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Hexagonal GaN nanorod-based photonic crystal slab as simultaneous yellow broadband reflector and blue emitter for phosphor-conversion white light emitting devices

机译:基于六角形GaN纳米棒的光子晶板作为同时黄宽带反射器和蓝色发射器,用于磷光体转换白光发射器件

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摘要

We report a hexagonal GaN nanorod-based two-dimensional photonic crystal (PhC) slab for phosphor-conversion white light emitting devices analyzed by three-dimensional finite-difference time-domain simulation; this slab has a broad reflection band at yellow wavelength with low Fabry-Pérot background at normal incidence. For practical use as a wavelength-selective reflector, a buffer layer under the PhC slab is employed to sustain the nanorods in the PhC slab. However, we observed that the buffer layer placed below the slab destroys the broad reflection band due to evanescent coupling of electromagnetic field in the slab and the buffer layer. By introducing small-sized base pillars between the slab and the buffer layer, we could decouple the interaction between the slab and the buffer layer and maintain the broad reflection band without any unexpected dips. Since this GaN nanorod-based PhC slab is designed for practical light emitting devices by considering dielectric and transparent conducting layers, this structure is directly applicable for developing hybrid white light emitting devices having both an (active) blue-color-emitting nanorod emitters and a (passive) normal reflector of phosphor emission.
机译:我们报道了一种基于六边形GaN纳米棒的二维光子晶体(PHC)板,用于通过三维有限差分时间域模拟分析的磷光体转换白光发射器件;该板坯在黄色波长下具有宽反射带,正常入射下的Babry-Péroot背景。为了实际用作波长选择反射器,采用PHC板下的缓冲层来维持PHC板中的纳米棒。然而,我们观察到,由于板坯和缓冲层中的电磁场的渐逝耦合,放置在板下的缓冲层破坏了宽反射带。通过在板坯和缓冲层之间引入小尺寸的基座,我们可以将板坯和缓冲层之间的相互作用分离,并在没有任何意外倾斜的情况下保持宽反射带。由于该GaN纳米棒的PHC板坯通过考虑电介质和透明导电层而设计了基于实际发光器件,因此该结构直接适用于开发具有(有源)蓝色发射纳米棒发射器和A的混合白色发光器件(被动)磷光体发射的正常反射器。

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