Mathies Florian, Brenner Philipp, Hernandez-Sosa Gerardo, Howard Ian A, Paetzold Ulrich W, Lemmer Uli
Opt Express. 2018 Jan 22;26(2):A144-A152. doi: 10.1364/OE.26.00A144.
We report on digitally printed distributed feedback lasers on flexible polyethylene terephthalate substrates based on methylammonium lead iodide perovskite gain material. The perovskite lasers are printed with a digital drop-on-demand inkjet printer, providing full freedom in the shape and design of the gain layer. We show that adjusting the perovskite ink increases the potential processing window and decreases the surface roughness of the active layer to less than 7 nm, which is essential for low lasing thresholds. Prototype inkjet-printed perovskite lasers processed on top of nanopatterned rigid as well as flexible substrates are demonstrated. Optimized perovskite gain layers printed on PET substrates demonstrated lasing and showed a linewidth of 0.4 nm and a lasing threshold of 270 kW/cm. In addition, printing of a distinct shape shows a high level of uniformity, demonstrated by a low spatial resolved full width half maximum variation over the whole printing area. These results reveal the possibilities of digital printed perovskite layers towards large-scale and low-cost laser applications of arbitrary shape.
我们报道了基于甲基碘化铅甲铵钙钛矿增益材料、在柔性聚对苯二甲酸乙二酯基板上的数字印刷分布式反馈激光器。钙钛矿激光器是用按需滴液式喷墨打印机打印的,这为增益层的形状和设计提供了完全的自由度。我们表明,调整钙钛矿墨水可扩大潜在的加工窗口,并将有源层的表面粗糙度降低至7纳米以下,这对于低激光阈值至关重要。展示了在纳米图案化刚性以及柔性基板上加工的喷墨打印钙钛矿激光器原型。在PET基板上打印的优化钙钛矿增益层实现了激光发射,线宽为0.4纳米,激光阈值为270千瓦/平方厘米。此外,独特形状的打印显示出高度的均匀性,在整个打印区域内空间分辨半高宽变化较低即证明了这一点。这些结果揭示了数字印刷钙钛矿层在任意形状的大规模低成本激光应用方面的可能性。