论文标题
自我注射锁定的第二次谐波综合来源
Self-injection-locked second-harmonic integrated source
论文作者
论文摘要
高相干性可见和几乎可见的激光源对于高级位置/导航/时机系统以及经典/量子传感系统的运行非常重要。但是,这些台式激光器的复杂性和大小是它们在实验室之外过渡的障碍。在这里,展示了一种在片上发出高氧气和近乎可见光的光线的系统。这些设备依赖于一种新方法,其中将波长转换和连贯性通过自我注射锁定在单个非线性谐振器中组合在一起。这种简化的方法在杂交设备中得到了证明,并在10-30 kHz左右提供了短期线宽。还获得了2兆瓦的转换的光电功率。此外,测量结果表明,异质整合可能导致超过11 MW的输出功率高于25%的转化效率。由于该方法使用成熟的III-V泵激光器与薄膜硅锂相结合,因此可以将其缩放以进行高成本的高氧化发射器。同样,连贯生成过程可以转移到其他频率转换过程中,包括光学参数振荡,总和/差异频率产生和第三谐波生成。
High coherence visible and near-visible laser sources are centrally important to the operation of advanced position/navigation/timing systems as well as classical/quantum sensing systems. However, the complexity and size of these bench-top lasers is an impediment to their transitioning beyond the laboratory. Here, a system-on-a-chip that emits high-coherence visible and near-visible lightwaves is demonstrated. The devices rely upon a new approach wherein wavelength conversion and coherence increase by self-injection-locking are combined within in a single nonlinear resonator. This simplified approach is demonstrated in a hybridly-integrated device and provides a short-term linewidth around 10-30 kHz. On-chip, converted optical power over 2 mW is also obtained. Moreover, measurements show that heterogeneous integration can result in conversion efficiency higher than 25% with output power over 11 mW. Because the approach uses mature III-V pump lasers in combination with thin-film lithium niobate, it can be scaled for low-cost manufacturing of high-coherence visible emitters. Also, the coherence generation process can be transferred to other frequency conversion processes including optical parametric oscillation, sum/difference frequency generation, and third-harmonic generation.