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首页> 外文期刊>Journal of Crystal Growth >Internal photoluminescence in ZnSe homoepitaxy and application in blue-green-orange mixed-color light-emitting diodes
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Internal photoluminescence in ZnSe homoepitaxy and application in blue-green-orange mixed-color light-emitting diodes

机译:ZnSe同质异位中的内部光致发光及其在蓝绿橙色混合色发光二极管中的应用

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We discuss the controllable color-range in ZnSe-based light-emitting diodes (LEDs) realized by ZnSe homoepitaxy and internal photoluminescence. ZnSe-based LED structures were grown by molecular-beam epitaxy (MBE) on mostly conductive ZnSe substrates, which exhibit under short wavelength light excitation at room temperature strong orange emission around 600 nm. This fact is exploited to fabricate integrated mixed-color LED chips, where light from the active layer sandwiched in a p-n-junction acts as internal excitation source. We named this effect recently "Internal Photoluminescence" (Wenisch et al., J. Appl. Phys. 82 (1997) 4690). It leads to electroluminescence spectra with two distinct emission peaks originated from the active layer and from the ZnSe substrate, respectively. In view of color impression, just by varying the Cd_xZn_(1-x)Se quantum-well composition and the radiant recombination rate in the substrate by it's choice, as much as two thirds of the visible color space is covered. Under conditions, when only the substrate emission is present, Commission Internationale d'Eclairage (CIE) chromaticity coordinates for orange color LEDs of (0.54, 0.45, 0.01) for the red, green and blue color, respectively, were determined. 490-nm quantum-well-emitting LEDs were found to be best suited in reaching the technologically important balanced white emission ("White Point") and a value of (0.31, 0.39, 0.30) for the color coordinates close to it was experimentally achieved.
机译:我们讨论了通过ZnSe同质外延和内部光致发光实现的ZnSe基发光二极管(LED)的可控色域。基于ZnSe的LED结构通过分子束外延(MBE)在大部分导电的ZnSe基板上生长,该基板在室温下在短波长光激发下表现出约600 nm的强橙色发射。利用这一事实来制造集成的彩色LED芯片,其中来自有源层的光被夹在p-n结中作为内部激发源。我们最近将此效应命名为“内部光致发光”(Wenisch等人,J.Appl.Phys.82(1997)4690)。这导致电致发光光谱具有两个分别来自有源层和ZnSe衬底的发射峰。考虑到色彩印象,仅通过改变Cd_xZn_(1-x)Se量子阱的组成和选择的基板中的辐射复合率,就可以覆盖多达三分之二的可见色彩空间。在条件下,当仅存在底物发射时,确定国际照明委员会(CIE)的橙色LED的色度坐标分别为红色,绿色和蓝色的(0.54、0.45、0.01)。发现490 nm量子阱发射的LED最适合达到技术上重要的平衡白光发射(“白点”),并且通过实验获得了接近其色坐标的值(0.31、0.39、0.30) 。

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