Nie Weijie, He Ruiyun, Cheng Chen, Rocha Uéslen, Rodríguez Vázquez de Aldana Javier, Jaque Daniel, Chen Feng
Opt Lett. 2016 May 15;41(10):2169-72. doi: 10.1364/OL.41.002169.
We report on the fabrication of optical lattice-like waveguide structures in an Nd:YAP laser crystal by using direct femtosecond laser writing. With periodically arrayed laser-induced tracks, the waveguiding cores can be located in either the regions between the neighbored tracks or the central zone surrounded by a number of tracks as outer cladding. The polarization of the femtosecond laser pulses for the inscription has been found to play a critical role in the anisotropic guiding behaviors of the structures. The confocal photoluminescence investigations reveal different stress-induced modifications of the structures inscribed by different polarization of the femtosecond laser beam, which are considered to be responsible for the refractive index changes of the structures. Under optical pump at 808 nm, efficient waveguide lasing at ∼1 μm wavelength has been realized from the optical lattice-like structure, which exhibits potential applications as novel miniature light sources.
我们报道了通过直接飞秒激光写入在Nd:YAP激光晶体中制备类光学晶格波导结构的方法。利用周期性排列的激光诱导轨迹,波导芯可以位于相邻轨迹之间的区域,或者位于由多个轨迹作为外包层包围的中心区域。已发现用于写入的飞秒激光脉冲的偏振在结构的各向异性导光行为中起关键作用。共焦光致发光研究揭示了由飞秒激光束不同偏振写入的结构的不同应力诱导改性,这被认为是结构折射率变化的原因。在808 nm的光泵浦下,从类光学晶格结构实现了在约1μm波长处的高效波导激光发射,该结构作为新型微型光源具有潜在应用。