论文标题

纳米光子学中的八度跨度可调参数振荡

Octave-spanning tunable parametric oscillation in nanophotonics

论文作者

Ledezma, Luis, Roy, Arkadev, Costa, Luis, Sekine, Ryoto, Gray, Robert, Guo, Qiushi, Nehra, Rajveer, Briggs, Ryan M., Marandi, Alireza

论文摘要

对于从通信到传感的众多应用,纳米光子学的纳米光子学是可取的。中红外光谱区域(超过2 $μ$ m的波长)对于依靠分子光谱法的应用尤为重要。在可调的来源中,光学参数振荡器通常提供一些最广泛的调谐范围。但是,它们在纳米光子学中的实现仅限于狭窄的调谐范围,并且仅在可见和近红外波长下。在这里,我们超越了这些限制,在分散工程的定期旋转氯二烯二氧化锂纳米光子学中,并展示了超宽可调的光学参数振荡器。泵波长接近1 $μ$ m,我们生成的输出波长可调节从1.53 $ $ m $ m到3.25 $ $ m的单个芯片,其输出功率高达数十毫米。我们的结果代表了纳米光子学中的第一个跨八度可调源,该源延伸到中红外,这对于许多集成的光子应用可能很有用。

Widely-tunable coherent sources are desirable in nanophotonics for a multitude of applications ranging from communications to sensing. The mid-infrared spectral region (wavelengths beyond 2 $μ$m) is particularly important for applications relying on molecular spectroscopy. Among tunable sources, optical parametric oscillators typically offer some of the broadest tuning ranges; however, their implementations in nanophotonics have been limited to narrow tuning ranges and only at visible and near-infrared wavelengths. Here, we surpass these limits in dispersion-engineered periodically-poled lithium niobate nanophotonics and demonstrate ultra-widely tunable optical parametric oscillators. With a pump wavelength near 1 $μ$m, we generate output wavelengths tunable from 1.53 $μ$m to 3.25 $μ$m in a single chip with output powers as high as tens of milliwatts. Our results represent the first octave-spanning tunable source in nanophotonics extending into the mid-infrared which can be useful for numerous integrated photonic applications.

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