Laser induced ablation of aluminum nanoparticle: A molecular dynamics study

Open

Riser Fahdiran, Erfan Handoko, Iwan Sugihartono, Herbert M. Urbassek

2018 MATEC Web of Conferences Vol. 197 Conference paper Cited by 11 SDG 7SDG 17 Quartile

Abstract

We investigate ablation of Aluminum nanoparticle due to ultrashort high-intensity laser pulse. Molecular dynamics simulation is used to follow the evolution of the system and observe thermodynamics together with cluster properties. The energy given from the laser to the system is 1.5 eV/atom which is above ablation threshold and modelled using instantaneous and homogenous energization at the beginning of simulation. The evolution of the system shows a highly non-equilibrium state after the irradiation. Expansion of the sphere indicated that the system cannot survive from the temporary high tensile pressure that leads to ablation. While the high temperature consecutively responsible for the formation of cluster, it also indicated that the system is relaxed at the end of the simulation. © The Authors, published by EDP Sciences, 2018.

Affiliations

State University of Jakarta, Physics Department, Jalan Rawamangun Muka, Jakarta Timur, 13220, Indonesia; University of Kaiserslautern, Physics Department and Research Center OPTIMAS, Erwin-Schrödinger-Straße, Kaiserslautern, 67663, Germany

Research at a Glance

Premium content — register to unlock

Research at a Glance

Register to unlock

Topics & SDG Alignment

Premium content — register to unlock

Topics & SDG Alignment

Register to unlock

Collaboration

Premium content — register to unlock

Collaboration

Register to unlock

Author Profile (Selected)

Premium content — register to unlock

Author Profile (Selected)

Register to unlock

References Overview

Premium content — register to unlock

References Overview

Register to unlock

Journal & Source

Premium content — register to unlock

Journal & Source

Register to unlock

Metadata & Integrity

Premium content — register to unlock

Metadata & Integrity

Register to unlock