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Possible Plasmonic Acceleration of LED Modulation for Li-Fi Applications

机译:LI-Fi应用的LED调制可能的等离子体加速度

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Emerging LED-based wireless visible light communication (Li-Fi) needs faster LED response to secure desirable modulation rates. Decay rate of an emitter can be enhanced by plasmonics, typically by an expense of efficiency loss because of non-radiative energy transfer. In this paper, metal-enhanced radiative and non-radiative decay rates are shown to be reasonably balanced to get with Ag nanoparticles nearly 100-fold enhancement of the decay rate for a blue LED without loss in overall efficacy. Additionally, gain in intensity occurs for intrinsic quantum yield Q(0) 1. With silver, rate enhancement can be performed through the whole visible. For color-converting phosphors, local field enhancement along with decay rate effects enable 30-fold rate enhancement with gain in efficacy. Since plasmonics always enhances decay rate, it can diminish Auger processes thus extending LED operation currents without efficiency droop. For quantum dot phosphors, plasmonic diminishing of Auger processes will improve photostability.
机译:新兴的基于LED的无线可见光通信(LI-FI)需要更快的LED响应,以确保安全的调制速率。通过辐射能量转移,可以通过效率损失来增强发射器的衰变率,通常通过效率损失。在本文中,金属增强的辐射和非辐射衰减速率被证明是合理的,以便与Ag纳米粒子接近100倍的增强蓝色LED的衰减率而不会损失整体疗效。另外,对于固有量子产量Q(0)&,强度的增益发生。 1.用银,可以通过整个可见的速率增强。对于彩色转换磷光体,局部场增强以及衰减率效应使30倍的速率增强具有效力的增益。由于血管分子总是提高衰减率,因此可以减少螺旋钻过程,从而延伸LED操作电流而无需效率下垂。对于量子点磷光体,螺旋钻过程的等离子体缩小将提高光稳定性。

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