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Enhanced bandwidth of white light communication using nanomaterial phosphors

机译:使用纳米材料荧光粉增强的白光通信带宽

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摘要

The bandwidth of white light emitting diodes (WLEDs) is an important factor that affects most of the system performances in visible light communication (VLC). It is mainly limited by the down-conversion phosphors. We propose in this paper to employ nanomaterial phosphors with short fluorescence lifetime and high quantum yield in VLC. The white-emitting device of bandwidth-based lifetime was fabricated by using several kinds of nanophosphors with different fluorescence lifetimes. Moreover, we proposed two theoretical models to analyze the factors that affect bandwidth. Compared with the commercial YAG-based WLEDs, the bandwidth of nanophosphor-based WLEDs can be improved over three times and close to the blue excitation sources. Our study indicates that nanophosphors can become promising fluorescent materials in VLC, and provides a new direction for developing wide-bandwidth VLC systems.
机译:白光发光二极管(WLED)的带宽是影响可见光通信(VLC)中大多数系统性能的重要因素。它主要受下转换磷光体的限制。我们在本文中建议在VLC中使用具有短荧光寿命和高量子产率的纳米材料荧光粉。通过使用几种具有不同荧光寿命的纳米磷光体,制造了基于带宽的白色发光器件。此外,我们提出了两个理论模型来分析影响带宽的因素。与商用YAG基WLED相比,纳米磷基WLED的带宽可以提高三倍,并且接近蓝色激发源。我们的研究表明,纳米磷光体可以成为VLC中很有前途的荧光材料,并为开发宽带VLC系统提供了新的方向。

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