论文标题
标准光纤的多光子电离
Multiphoton ionization of standard optical fibers
论文作者
论文摘要
通过同时吸收多个光子的原子电离已经在光纤中发现了应用,从而导致了独特的非线性现象。迄今为止,对电离状态的研究仅限于充满气体的空心核纤维。在这里,我们研究了标准光纤维的多光子电离,其中强烈激光脉冲构成构成纤维结构本身的原子,而不是填充气体的原子。我们表征了通过光学故障产生的材料修改。它们的形成会影响长时间的时间尺度的激光束动力学。通过光学显微镜和X射线显微镜图研究了损伤特征。在玻璃光子学的框架中,我们的结果为一种新型的玻璃波导微加工技术铺平了道路。
Atoms ionization by the simultaneous absorption of multiple photons has found applications in fiber optics, where it leads to unique nonlinear phenomena. To date, studies of the ionization regime have been limited to gas-filled hollow-core fibers. Here, we investigate multiphoton ionization of standard optical fibers, where intense laser pulses ionize the atoms constituting the fiber structure itself, instead of that of the filling gas. We characterize material modifications produced by optical breakdown. Their formation affects laser beam dynamics over hours long temporal scales. The damage features are studied by means of optical microscopy and X-ray microtomography. In the framework of glass photonics, our results pave the way for a novel glass waveguide micromachining technique.