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An ultra-narrow linewidth solution-processed organic laser

机译:超窄线宽溶液处理的有机激光器

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摘要

Optically pumped lasers based on solution-processed thin-film gain media have recently emerged as low-cost, broadly tunable, and versatile active photonics components that can fit any substrate and are useful for, e.g., chemo- or biosensing or visible spectroscopy. Although single-mode operation has been demonstrated in various resonator architectures with a large variety of gain media—including dye-doped polymers, organic semiconductors, and, more recently, hybrid perovskites—the reported linewidths are typically on the order of a fraction of a nanometer or broader, i.e., the coherence lengths are no longer than a few millimeters, which does not enable high-resolution spectroscopy or coherent sensing. The linewidth is fundamentally constrained by the short photon cavity lifetime in the standard resonator geometries. We demonstrate here a novel structure for an organic thin-film solid-state laser that is based on a vertical external cavity, wherein a holographic volume Bragg grating ensures both spectral selection and output coupling in an otherwise very compact (∼cm3) design. Under short-pulse (0.4 ns) pumping, Fourier-transform-limited laser pulses are obtained, with a full width at half-maximum linewidth of 900 MHz (1.25 pm). Using 20-ns-long pump pulses, the linewidth can be further reduced to 200 MHz (0.26 pm), which is four times above the Fourier limit and corresponds to an unprecedented coherence length of 1 m. The concept is potentially transferrable to any type of thin-film laser and can be ultimately made tunable; it also represents a very compact alternative to bulky grating systems in dye lasers.
机译:最近,基于溶液处理的薄膜增益介质的光泵浦激光器已经成为低成本,广泛可调谐且用途广泛的有源光子组件,它们可以适合任何基板,并且可用于例如化学或生物传感或可见光谱。尽管已经在具有多种增益介质(包括染料掺杂的聚合物,有机半导体以及最近的杂化钙钛矿)的各种谐振器体系结构中证明了单模工作,但是报告的线宽通常约为A的几分之一。纳米或更宽,即相干长度不超过几毫米,这不能实现高分辨率光谱或相干感测。在标准谐振腔中,线宽从根本上受光子腔寿命短的限制。我们在此展示了一种基于垂直外腔的有机薄膜固态激光器的新颖结构,其中全息体积的布拉格光栅可确保光谱选择和输出耦合,而这种结构非常紧凑(〜cm 3 )设计。在短脉冲(0.4 ns)泵浦下,获得了傅里叶变换限制的激光脉冲,其半峰最大线宽为900 MHz(1.25 pm)时的全宽。使用20 ns长的泵浦脉冲,可以将线宽进一步减小到200 MHz(0.26 pm),这是傅立叶极限的四倍,并且对应于1 m的前所未有的相干长度。这个概念有可能被转移到任何类型的薄膜激光器上,并且最终可以被调整。它也是染料激光器中体积庞大的光栅系统的非常紧凑的替代品。

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