首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Enhancing the light emission of AlGaAs-based LEDs through single gold nanoparticles
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Enhancing the light emission of AlGaAs-based LEDs through single gold nanoparticles

机译:通过单个金纳米粒子增强基于AlGaAs的LED的发光

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The outcoupling of light from AlGaAs-based light-emitting diodes (LEDs) can be improved by means of metal nanoparticles deposited on the surface of the device: light that would otherwise remain trapped in the highrefractive- index material by total internal reflection is scattered to the outside. We present an experimental study on the emission enhancement produced by single isolated gold nanoparticles of various sizes (60-150nm in diameter) and compare the results with numerical simulations. We find a clear enhancement as long as the dipole plasmon resonance of the particle is at a shorter wavelength than the LED emission. If the plasmon resonance coincides with the LED emission or is at a larger wavelength, the enhancement turns into damping. The simulations indicate that this latter effect is mainly caused by the particle quadrupole resonance producing absorption.
机译:来自AlGaAs基发光二极管(LED)的光的外耦合可通过沉积在设备表面的金属纳米粒子来改善:否则,由于全内反射而保留在高折射率材料中的光会散射到外。我们提出了一种实验研究,该实验研究了各种尺寸(直径为60-150nm)的单个孤立金纳米粒子产生的发射增强,并将结果与​​数值模拟进行了比较。只要粒子的偶极等离子体激元共振的波长短于LED发射的波长,我们就会发现明显的增强。如果等离振子共振与LED发射一致或处于较大波长,则增强会变成阻尼。仿真表明,后者的影响主要是由粒子四极共振产生吸收引起的。

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