论文标题

异质随机激光器具有通过复制对称性破坏图可视化的开关活动

Heterogeneous Random Laser with Switching Activity Visualized by Replica Symmetry Breaking Maps

论文作者

Massaro, Loredana M., Gentilini, Silvia, Portone, Alberto, Camposeo, Andrea, Pisignano, Dario, Conti, Claudio, Ghofraniha, Neda

论文摘要

在过去的十年中,提出了复杂的光发射器网络,作为光子电路和实验室芯片活动设备的新型平台。通过从聚合物纳米纤维的复杂网格中获得的纳米级随机激光器(RLS)建立的激光网络是成功的原型。但是,在据报道的研究中,研究了主要是从整个共振器网络中进行集体发射,并且只有在少数情况下,单点的发射显示,虽然是均匀且广泛的空间发射。在所有情况下,都观察到小型化激光的同时激活。在这里,不同的是,我们意识到由色带状和高度多孔纤维制成的异质随机激光器,具有分离的微米域的RL作用,可通过调整泵送光强度来打开和关闭。我们通过首次使用2μM空间分辨率的发射纤维的副本对称性(RSB)构建来形象化这种新型效果。此外,我们计算激光区域的空间相关性,显然平均伸展为50μm。观察到的闪烁效果是由于模式沿着光导向纤维的模式相互作用,并在制造具有特定和适应活性的柔性光子网络时打开了新的途径。

In the past decade, complex networks of light emitters are proposed as novel platforms for photonic circuits and lab-on-chip active devices. Lasing networks made by connected multiple gain components and graphs of nanoscale random lasers (RLs) obtained from complex meshes of polymeric nanofibers are successful prototypes. However, in the reported research, mainly collective emission from a whole network of resonators is investigated, and only in a few cases, the emission from single points showing, although homogeneous and broad, spatial emission. In all cases, simultaneous activation of the miniaturized lasers is observed. Here, differently, we realize heterogeneous random lasers made of ribbon-like and highly porous fibers with evident RL action from separated micrometric domains that alternatively switch on and off by tuning the pumping light intensity. We visualize this novel effect by building for the first time replica symmetry breaking (RSB) maps of the emitting fibers with 2 μm spatial resolution. In addition, we calculate the spatial correlations of the laser regions showing clearly an average extension of 50 μm. The observed blinking effect is due to mode interaction along light guiding fibers and opens new avenues in the fabrication of flexible photonic networks with specific and adaptable activity.

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