论文标题
分散工程薄膜锂尼贝特的超宽带中红外生成
Ultra-broadband mid-infrared generation in dispersion-engineered thin-film lithium niobate
论文作者
论文摘要
薄膜硅锂(TFLN)是一个新兴平台,用于紧凑,低功率非线性设备,并已广泛用于近红外频率转换。最近的工作将这些设备扩展到中红外波长,在该波长中,可以将广泛可调的来源用于化学传感。为此,我们通过利用在紧密填充的波导中可用的分散工程来证明了固定的1微米泵和可调电信源之间有效和宽带差的频率产生。与常规的尼奥贝特锂波导相比,我们显示了转化效率的同时提高转化效率的1-2级提高,并且中红外的运行带宽增强。我们还研究了表面吸附水中的中红外损失对这些设备性能的影响。
Thin-film lithium niobate (TFLN) is an emerging platform for compact, low-power nonlinear-optical devices, and has been used extensively for near-infrared frequency conversion. Recent work has extended these devices to mid-infrared wavelengths, where broadly tunable sources may be used for chemical sensing. To this end, we demonstrate efficient and broadband difference frequency generation between a fixed 1-micron pump and a tunable telecom source in uniformly-poled TFLN-on-sapphire by harnessing the dispersion-engineering available in tightly-confining waveguides. We show a simultaneous 1-2 order-of-magnitude improvement in conversion efficiency and ~5-fold enhancement of operating bandwidth for mid-infrared generation when compared to conventional lithium niobate waveguides. We also examine the effects of mid-infrared loss from surface-adsorbed water on the performance of these devices.