作者: Maolin Pang , Ryota Suzuki , Makoto Saito , Ken-ichi Machida , Hiromasa Hanzawa
DOI: 10.1063/1.2838355
关键词: Fiber laser 、 Crystal growth 、 Laser 、 Crystal 、 Materials science 、 Ionic conductivity 、 Laser power scaling 、 Ytterbium 、 Inorganic chemistry 、 Optoelectronics 、 Ion
摘要: Li1.3Al0.3Ti1.7(PO4)3 conductive crystal lines composed of closely compacted fine particles were patterned on the surface 13.9Li2O–8.9Al2O3–37.6TiO2–38.6P2O5–1NiO (mol %) precursor glass by a continuous wave Yb fiber laser irradiation (λ=1078nm) using nickel atom heat processing method. Homogeneous and smooth with uniform width 30μm obtained power 1.3W. The Li+ ion conductivity was about two orders magnitude higher than that matrix due to formation crystalline phase irradiation.