材料科学
光电子学
硅
薄脆饼
非线性光学
有机半导体
光子学
热稳定性
丙二腈
真空沉积
二次谐波产生
硅光子学
非线性系统
晶体生长
纳米技术
光学
薄膜
化学
结晶学
物理
有机化学
量子力学
激光器
催化作用
作者
Nina Krainova,H. M. Johnson,Raju Lampande,Siyu Gao,Noa Marom,Barry P. Rand,Noel C. Giebink
摘要
Integrating second order nonlinear (χ(2)) optical materials on chip is an ongoing challenge for Si photonics. Noncentrosymmetric molecular crystals have the potential to deliver high χ(2) nonlinearity with good thermal stability, but so far have been limited to growth from solution or the melt, which are both difficult to control and scale up in manufacturing. Here, we show that large (>100 μm) single crystal domains of the nonlinear molecule 2-[3-(4-hydroxystyryl)-5,5-dimethylcyclohex-2-enylidene] malononitrile (OH1) can be grown monolithically on either glass or Si via vacuum evaporation, followed by a short thermal annealing step. The crystallites are tens of nanometer thick and exhibit strong second harmonic generation with their primary χ(2) tensor component lying predominantly in plane. Remarkably, we find that a single domain can grow uninterrupted through nearby channels etched on a Si wafer, which may provide a path to integrate OH1 on Si or Si3N4 waveguides for a broad range of χ(2)-based photonic integrated circuit functionality.
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