Nat Mater. 2014 Apr;13(4):382-6. doi: 10.1038/nmat3910.
Modern telecommunications rely on the transmission and manipulation of optical signals. Optical amplification plays a vital part in this technology, as all components in a real telecommunications system produce some loss. The two main issues with present amplifiers, which rely on erbium ions in a glass matrix, are the difficulty in integration onto a single substrate and the need of high pump power densities to produce gain. Here we show a potential organic optical amplifier material that demonstrates population inversion when pumped from above using low-power visible light. This system is integrated into an organic light-emitting diode demonstrating that electrical pumping can be achieved. This opens the possibility of direct electrically driven optical amplifiers and optical circuits. Our results provide an alternative approach to producing low-cost integrated optics that is compatible with existing silicon photonics and a different route to an effective integrated optics technology.
现代电信依赖于光学信号的传输和处理。光放大在这项技术中起着至关重要的作用,因为实际电信系统中的所有组件都会产生一定的损耗。目前基于玻璃基质中铒离子的放大器存在两个主要问题,一是难以集成到单个衬底上,二是需要高泵浦功率密度才能产生增益。在这里,我们展示了一种潜在的有机光学放大器材料,当使用低功率可见光从上方泵浦时,它可以实现粒子数反转。该系统集成在有机发光二极管中,证明了可以实现电泵浦。这为直接电驱动光放大器和光电路开辟了可能性。我们的研究结果为制造低成本集成光学器件提供了一种替代方法,与现有的硅光子学兼容,并且为有效的集成光学技术提供了一条不同的途径。