Kim Jiung, Kumar C H S S Pavan, Cha Myoungsik, Choi Heejoo, Kim Kyung-Jo, Peyghambarian N
Department of Physics, Pusan National University, Busan, 609-735, Korea.
College of Optical Sciences, University of Arizona, Tucson, AZ, 85721, United States.
Sci Rep. 2018 Nov 6;8(1):16419. doi: 10.1038/s41598-018-34788-8.
We report the first realization of quasi-phase-matched (QPM) third harmonic generation in isotropic polymer films. Spin-coated thin films of ethyl-violet molecules dispersed in a polymer host (EV) were used as cubic nonlinear optical media because of their transparency at both the fundamental (1230 nm) and the third harmonic (410 nm) wavelengths. A passive layer of a UV-curable material was formed to compensate the phase shift between the two light waves after propagating through each EV layer. We fabricated a series of samples with 14 EV layers (03 alternatingly coated passive layers). The third harmonic output power showed a quadratic increase with the number of layers, providing a strong evidence for successful quasi-phase-matching. A conversion efficiency of 0.15% was observed with a 190 fs pulse input.
我们报道了在各向同性聚合物薄膜中首次实现准相位匹配(QPM)三次谐波产生。分散在聚合物主体(EV)中的乙基紫分子旋涂薄膜被用作立方非线性光学介质,这是因为它们在基波(1230 nm)和三次谐波(410 nm)波长处均具有透明度。形成了一层紫外光固化材料的无源层,以补偿两束光波在穿过每个EV层后之间的相移。我们制备了一系列具有1至4个EV层(0至3个交替涂覆的无源层)的样品。三次谐波输出功率随层数呈二次方增加,这为成功实现准相位匹配提供了有力证据。在输入190 fs脉冲时,观察到转换效率为0.15%。