Beam collapse and refractive index changes inside fused silica induced by loosely focused femtosecond laser

Author:

Zhang Lin,Liu Jiamin,Zhong Zhicheng,Jiang HaoORCID,Gu Honggang,Chen XiuguoORCID,Liu ShiyuanORCID

Abstract

Abstract Femtosecond laser-induced optical and structural changes inside transparent materials are crucial to ultrafast laser micromachining. In this work, on-axis beam collapse has been predicted by theoretical simulations and further demonstrated by the experimental results where a femtosecond pulse was loosely focused into a fused silica with the energy far above the self-focusing threshold. A detailed discussion of the energy thresholds and the starting locations on the optical axis of beam collapse for different beam waist radiuses is given. In addition, the spatial distribution of the refractive index has been determined using a spectroscopic ellipsometer and a roughly uniform decrease of 0.1 has been observed in the laser-modified region. Further, the relationship between the spatial distribution of the refractive index and the pulse energy density has been discussed quantitatively. The observed modulation of the beam collapse and the refractive index distribution can be expected to be a useful tool for femtosecond laser micromachining.

Funder

National Science and Technology Major Project of China

National Key Research and Development Plan of China

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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