Lee Seonwoo, Kishi Tetsuo, Bellouard Yves
Galatea Lab, STI IEM, Ecole Polytechnique Fédérale de Lausanne (EPFL), Rue de la Maladière 71b, Neuchâtel CH-2002, Switzerland.
Department of Chemistry and Materials Science, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
ACS Nano. 2024 Sep 10;18(36):24929-24940. doi: 10.1021/acsnano.4c05554. Epub 2024 Aug 23.
The selective and controlled formation of nanocrystals in glass is emerging as a versatile method to achieve functional photonics, optoelectronics, and quantum devices, such as single-photon emitters. Here, we investigate the use of wide-field polarimetric second-harmonic (SH) microscopy as a method to rapidly and nondestructively examine nanoscale crystal arrangements in laser-processed glass. As a case study, we investigate tellurite glass, where the formation of a trigonal tellurium (t-Te) nanocrystalline phase after femtosecond laser exposure was recently demonstrated. Combined with theoretical models, we show that wide-field polarimetric SH microscopy offers comprehensive information on the nanocrystals' orientation, distribution, and chirality. With its high imaging throughput and spatial resolution, this method has the potential not only to significantly accelerate investigations on laser-induced glass crystallization processes but also to provide a valuable tool for in situ process monitoring.
在玻璃中选择性地、可控地形成纳米晶体正成为一种通用方法,可用于实现功能性光子学、光电子学和量子器件,如单光子发射器。在此,我们研究了使用宽场偏振二次谐波(SH)显微镜作为一种快速、无损检测激光加工玻璃中纳米级晶体排列的方法。作为一个案例研究,我们研究了碲酸盐玻璃,最近已证明在飞秒激光照射后会形成三角碲(t-Te)纳米晶相。结合理论模型,我们表明宽场偏振SH显微镜可提供有关纳米晶体取向、分布和手性的全面信息。凭借其高成像通量和空间分辨率,该方法不仅有可能显著加速对激光诱导玻璃结晶过程的研究,还可为原位过程监测提供有价值的工具。