Park Taewon, Stokowski Hubert S, Ansari Vahid, McKenna Timothy P, Hwang Alexander Y, Fejer M M, Safavi-Naeini Amir H
Opt Lett. 2022 Jun 1;47(11):2706-2709. doi: 10.1364/OL.455046.
The strength of interactions between photons in a χ nonlinear optical waveguide increases at shorter wavelengths. These larger interactions enable coherent spectral translation and light generation at a lower power, over a broader bandwidth, and in a smaller device: all of which open the door to new technologies spanning fields from classical to quantum optics. Stronger interactions may also grant access to new regimes of quantum optics to be explored at the few-photon level. One promising platform that could enable these advances is thin-film lithium niobate (TFLN), due to its broad optical transparency window and possibility for quasi-phase matching and dispersion engineering. In this Letter, we demonstrate second harmonic generation of blue light on an integrated thin-film lithium niobate waveguide and observe a conversion efficiency of η = 33, 000%/W-cm, significantly exceeding previous demonstrations.
在χ非线性光波导中,光子间相互作用的强度在较短波长下会增强。这些更强的相互作用能够实现相干光谱转换,并以更低的功率、在更宽的带宽内以及更小的器件中产生光:所有这些都为从经典光学到量子光学等各个领域的新技术打开了大门。更强的相互作用还可能使人们能够在单光子水平上探索量子光学的新领域。一种有望实现这些进展的平台是薄膜铌酸锂(TFLN),这是由于其具有宽广的光学透明窗口以及实现准相位匹配和色散工程的可能性。在本信函中,我们展示了集成薄膜铌酸锂光波导上蓝光的二次谐波产生,并观察到转换效率为η = 33000%/W·cm,显著超过了之前的演示结果。