Microscopic mechanisms for initiation and evolution of femtosecond laser-induced columnar structures above the surface level of aluminum

Author:

Park Taehoon12,Kim Yong-dae,Lee Hyo Soo1,Kang Jeongjin,Cho Jongweon3,Hwang Taek YongORCID

Affiliation:

1. Korea Institute of Industrial Technology

2. Inha University

3. Myongji University

Abstract

A better understanding of the formation of femtosecond (fs) laser-induced surface structures is key to the control of their morphological profiles for desired surface functionalities on metals. In this work, with fs laser pulse irradiation, the two stages of formation mechanisms of the columnar structures (CSs) grown above the surface level are investigated on pure Al plates in ambient air. Here, we find that the redeposition of ablated microscale clusters following fs laser pulses of irradiation acts as the nucleation sites of CS formation, which strongly affects their location and density within the laser spot. Furthermore, we suggest their structural growths and morphological shape changes are directly associated with the competition among four laser-impact hydrodynamical phenomena: laser ablation, subsequent molten metal flow, particles’ redeposition, and metal vapor condensation with continued pulse irradiation.

Funder

Korea Institute of Industrial Technology

National Research Foundation of Korea

Ministry of SMEs and Startups

Publisher

Optica Publishing Group

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