Zhou Junchao, Liu Mingzhao, Lu Ming, Lin Pao Tai
Opt Lett. 2020 Dec 1;45(23):6358-6361. doi: 10.1364/OL.403760.
Broadband mid-infrared (mid-IR) frequency doubling was demonstrated using nonlinear barium titanate (BTO) thin films. The device has a strip-loaded waveguide structure consisting of top silicon nitride (SiN) strips and an underneath BTO guiding layer. The epitaxial BTO was deposited on a strontium titanate (STO) substrate by pulsed-laser deposition. Through a SiN grating coupler, the pumping mid-IR light at wavelength =3.30-3.45µ was coupled into the nonlinear BTO layer, where the spectrum of the near-infrared (NIR) second-harmonic generation was characterized. The developed BTO waveguides provide a platform for mid-IR nonlinear integrated photonics and on-chip quantum optics.
利用非线性钛酸钡(BTO)薄膜实现了宽带中红外(mid-IR)倍频。该器件具有带状加载波导结构,由顶部氮化硅(SiN)条带和下方的BTO波导层组成。通过脉冲激光沉积在钛酸锶(STO)衬底上沉积外延BTO。通过SiN光栅耦合器,将波长为3.30 - 3.45µ的泵浦中红外光耦合到非线性BTO层中,在此对近红外(NIR)二次谐波产生的光谱进行了表征。所开发的BTO波导为中红外非线性集成光子学和片上量子光学提供了一个平台。