Energy deposition and incubation effects of nonlinear absorption of ultrashort laser pulses in dielectrics

Author:

Guo Ziyue1,Hu Kailin1ORCID,Cao Tao1,Liu Shaozhen1,Yan Jikun1,Li Zhou1,Xu Qi1,Corkum Paul B.2ORCID,Peng Jiahui1

Affiliation:

1. Huazhong University of Science and Technology

2. Joint Attosecond Science Laboratory, National Research Council and University of Ottawa

Abstract

Although ultrashort laser has been widely employed in micromachining thanks to its excellent processing precision, one of the main challenges it faces when applied to 3D modification inside dielectrics is its processing efficiency. Many applications require multiple pulses to achieve significant modification to create structure such as microlenses. We report incubation experiments on energy deposition and the control of material modification in fused silica. This allows us to develop a practical incubation model by taking account different ionization mechanisms, in which coefficients relating to multiphoton and avalanche ionization change with laser shots due to accumulating defects. We then extend our study to the scheme where a pre-pulse is used to limit the absorption volume through pre-seeding. Both experiments and simulations show that the efficiency of laser processing can be significantly improved without sacrificing the spatial resolution with this method, especially for longer pulses.

Funder

National Key Research and Development Program of China

Hubei Technological Innovation Special Fund

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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