Hwang Emily, Harper Nathan, Sekine Ryoto, Ledezma Luis, Marandi Alireza, Cushing Scott
Opt Lett. 2023 Aug 1;48(15):3917-3920. doi: 10.1364/OL.491528.
On-chip ultraviolet (UV) sources are of great interest for building compact and scalable atomic clocks, quantum computers, and spectrometers. However, few material platforms are suitable for integrated UV light generation and manipulation. Of these materials, thin-film lithium niobate offers unique advantages such as sub-micron modal confinement, strong nonlinearity, and quasi-phase matching. Despite these characteristics, its utilization in the UV has remained elusive because of the substantial sensitivity of standard quasi-phase matching to fabrication imperfections, the photorefractive effect, and relatively large losses in this range. Here, we present efficient (197 ± 5%/W/cm) second harmonic generation of UV-A light in a periodically poled lithium niobate nanophotonic waveguide. We achieve on-chip UV powers of ∼30 µW and linear wavelength tunability using temperature. These results are enabled with large cross section waveguides, which leads to first-order UV quasi-phase-matching with relatively long poling periods (>1.5 µm). By varying the poling period, we have achieved the shortest reported wavelength (355 nm) generated through frequency doubling in thin-film lithium niobate. Our results open up new avenues for UV on-chip sources and chip-scale photonics through compact frequency-doubling of common near-IR laser diodes.
片上紫外(UV)光源对于构建紧凑且可扩展的原子钟、量子计算机和光谱仪具有极大的吸引力。然而,很少有材料平台适用于集成紫外光的产生和操控。在这些材料中,薄膜铌酸锂具有诸如亚微米模式限制、强非线性和准相位匹配等独特优势。尽管有这些特性,但由于标准准相位匹配对制造缺陷、光折变效应以及该范围内相对较大的损耗非常敏感,其在紫外领域的应用仍然难以实现。在此,我们展示了在周期性极化铌酸锂纳米光子波导中高效(197±5%/W/cm)的紫外-A光二次谐波产生。我们利用温度实现了约30 μW的片上紫外功率和线性波长调谐。这些结果是通过大截面波导实现的,这导致了具有相对长极化周期(>1.5 µm)的一阶紫外准相位匹配。通过改变极化周期,我们实现了薄膜铌酸锂中通过倍频产生的最短报道波长(355 nm)。我们的结果通过常见近红外激光二极管的紧凑倍频为片上紫外光源和芯片级光子学开辟了新途径。