Tunable sum-frequency generation in modal phase-matched thin film lithium niobate rib waveguides
Haoyang Du, Xiuquan Zhang, Lei Wang, Yuechen Jia, Feng Chen
Abstract
In this work, we report a highly efficient and tunable on-chip sum-frequency generation (SFG) on a thin-film lithium niobate platform via modal phase matching (e + e→e). It provides on-chip SFG a solution with both high efficiency and poling-free by using the highest nonlinear coefficient d 33 instead of d 31 . The on-chip conversion efficiency of SFG is approximately 2143%W −1 with a full width at half maximum (FWHM) of 4.4 nm in a 3-mm-long waveguide. It can find applications in chip-scale quantum optical information processing and thin-film lithium niobate based optical nonreciprocity devices.
Topics & Concepts
Lithium niobateOpticsMaterials scienceModalPhase (matter)Sum-frequency generationThin filmRefractive indexNonlinear opticsOptoelectronicsLaserPhysicsPolymer chemistryNanotechnologyQuantum mechanicsPhotorefractive and Nonlinear OpticsPhotonic and Optical DevicesAdvanced Fiber Laser Technologies