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飞秒激光光致刻写微孔的微纳尺度表征

Micro-to-Nanoscale Characterization of Femtosecond Laser Photo-Inscribed Microvoids.

作者信息

Sosa Matilde, Cavillon Maxime, Blanchet Thomas, Nemeth Gergely, Borondics Ferenc, Laffont Guillaume, Lancry Matthieu

机构信息

Université Paris-Saclay, CEA, List, 91120 Palaiseau, France.

Institut de Chimie Moléculaire et des Matériaux d'Orsay (ICMMO/SP2M/MAP), Université Paris-Saclay, CNRS, 91405 Orsay, France.

出版信息

Nanomaterials (Basel). 2024 Jul 20;14(14):1228. doi: 10.3390/nano14141228.

Abstract

Fiber Bragg gratings are key components for optical fiber sensing applications in harsh environments. This paper investigates the structural and chemical characteristics of femtosecond laser photo-inscribed microvoids. These voids are at the base of type III fs-gratings consisting of a periodic array of microvoids inscribed at the core of an optical fiber. Using high-resolution techniques such as quantitative phase microscopy, electron transmission microscopy, and scattering-type scanning near-field IR optical microscopy, we examined the structure of the microvoids and the densified shells around them. We also investigated the high-temperature behavior of the voids, revealing their evolution in size and shape under step isochronal annealing conditions up to 1250 °C.

摘要

光纤布拉格光栅是恶劣环境下光纤传感应用的关键部件。本文研究了飞秒激光光写入微孔的结构和化学特性。这些微孔是III型飞秒光栅的基础,该光栅由刻写在光纤纤芯中的微孔周期性阵列组成。我们使用定量相显微镜、电子透射显微镜和散射型扫描近场红外光学显微镜等高分辨率技术,研究了微孔及其周围致密化壳层的结构。我们还研究了微孔在高温下的行为,揭示了它们在高达1250°C的分步等时退火条件下尺寸和形状的演变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa6a/11279977/aedf8a48bed5/nanomaterials-14-01228-g001.jpg

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