Xie Qiong, Shchedrina Nadezhda, Cavillon Maxime, Poumellec Bertrand, Lancry Matthieu
Institut de Chimie Moléculaire et des Matériaux d'Orsay, CNRS-Université Paris Sud, Université Paris Saclay Bât. 410 91405 Orsay France
Nanoscale Adv. 2023 Nov 21;6(2):489-498. doi: 10.1039/d3na00748k. eCollection 2024 Jan 16.
Femtosecond (fs) laser irradiation inside transparent materials has drawn considerable interest over the past two decades. More specifically, self-assembled nanogratings, induced by fs laser direct writing (FLDW) inside glass, enable a broad range of potential applications in optics, photonics, or microfluidics. In this work, a comprehensive study of nanogratings formed inside fused silica by FLDW is presented based on high-resolution electron microscopy imaging techniques. These nanoscale investigations reveal that the intrinsic structure of nanogratings is composed of oblate nanopores, shaped into nanoplanes, regularly spaced and oriented perpendicularly to the laser polarization. These nanoporous layers are forced-organized by light, resulting in a pseudo-organized spacing at the sub-wavelength scale, and observed in a wide range of optical glasses. In light of the current state of the art, we discuss the imprinting of nanoporous layers under thermomechanical effects induced by a plasma-mediated nanocavitation process.
在过去二十年中,飞秒(fs)激光在透明材料内部的辐照引起了广泛关注。更具体地说,飞秒激光直写(FLDW)在玻璃内部诱导形成的自组装纳米光栅,在光学、光子学或微流体领域具有广泛的潜在应用。在这项工作中,基于高分辨率电子显微镜成像技术,对飞秒激光直写在熔融石英内部形成的纳米光栅进行了全面研究。这些纳米尺度的研究表明,纳米光栅的固有结构由扁球形纳米孔组成,这些纳米孔形成纳米平面,规则排列并垂直于激光偏振方向。这些纳米多孔层由光强制组织,在亚波长尺度上产生伪组织间距,并在多种光学玻璃中观察到。鉴于当前的技术水平,我们讨论了等离子体介导的纳米空化过程引起的热机械效应下纳米多孔层的印记。