Laser ablation of polished and nanostructured titanium surfaces by nanosecond laser pulses

被引:22
|
作者
Lednev, Vasily N. [1 ]
Pershin, Sergey M. [1 ]
Ionin, Andrey A. [2 ]
Kudryashov, Sergey I. [2 ]
Makarov, Sergey V. [2 ]
Ligachev, Alexander E. [1 ]
Rudenko, Andrey A. [2 ]
Chmelnitsky, Roman A. [2 ]
Bunkin, Alexey F. [1 ]
机构
[1] Russian Acad Sci, AM Prokhorov Gen Phys Inst, Moscow 119991, Russia
[2] Russian Acad Sci, PN Lebedev Phys Inst, Moscow 119991, Russia
基金
俄罗斯基础研究基金会;
关键词
Laser plasma; Nanostructured surface; Laser ablation; INDUCED BREAKDOWN SPECTROSCOPY; SELECTIVE EVAPORATION; ALLOYS; TOPOGRAPHY; LIBS;
D O I
10.1016/j.sab.2013.07.010
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
A comparison of the IR nanosecond laser ablation parameters for polished and nanostructured titanium samples has been performed. The titanium foil was mechanically polished and pres-structured by multiple 744-nm femtosecond laser pulses producing large surface spots covered by ripples with periods in range of 400-500 nm. In order to evaluate the influence of such nanoripples, the nanosecond laser ablation and laser plasma properties were compared for polished surface, surface with nanoripples parallel and orthogonal to the laser beam polarization. A substantial decrease of the nanosecond ablation threshold was observed for the nanostructured in contrast to polished surface was detected while no influence of the ripple orientation vs. beam polarization was revealed. The comparison of plasma spectra for the ablation cases demonstrated that intensity of basic atomic lines and plasma emission duration were 2-5 times larger for the polished sample while spectra evolution was faster for the nanostructured sample. Plasma temperature and electron density were slightly lower for nanostructured sample while laser beam polarization has no effect on plasma properties. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:15 / 19
页数:5
相关论文
共 50 条
  • [21] Fabrication of durable superhydrophilic silicon surfaces using nanosecond laser pulses
    Verma, Nancy
    Anoop, K. K.
    Dominic, Priya
    Philip, Reji
    JOURNAL OF APPLIED PHYSICS, 2020, 128 (13)
  • [22] Numerical simulation and experimental analysis on nanosecond laser ablation of titanium alloy
    Zhao, Wen
    Yu, Zhou
    Hu, Jun
    JOURNAL OF MANUFACTURING PROCESSES, 2023, 99 : 138 - 151
  • [23] Laser ablation impulse generated by irradiating aluminum target with nanosecond laser pulses at normal and oblique incidence
    Wang, Bin
    APPLIED PHYSICS LETTERS, 2017, 110 (01)
  • [24] Proliferation of Osteoblasts on Laser-Modified Nanostructured Titanium Surfaces
    Babuska, Vaclav
    Palan, Jan
    Dobra, Jana Kolaja
    Kulda, Vlastimil
    Duchek, Michal
    Cerny, Jan
    Hrusak, Daniel
    MATERIALS, 2018, 11 (10)
  • [25] Ablation of molecular solids under nanosecond laser pulses: The role of inertial confinement
    Perez, Danny
    Lewis, Laurent J.
    Lorazo, Patrick
    Meunier, Michel
    APPLIED PHYSICS LETTERS, 2006, 89 (14)
  • [26] APPROXIMATE THEORY OF HIGHLY ABSORBING POLYMER ABLATION BY NANOSECOND LASER-PULSES
    FURZIKOV, NP
    APPLIED PHYSICS LETTERS, 1990, 56 (17) : 1638 - 1640
  • [27] The peculiarities of ablation and deposition of brass by nanosecond laser pulses at the LIBT-scheme
    Ramos-Velazquez, A.
    Amiaga, J.
    Veiko, V.
    Khuznakhmetov, R.
    Polyakov, D.
    OPTICS AND LASER TECHNOLOGY, 2025, 181
  • [28] Physical and material aspects in using visible laser pulses of nanosecond duration for ablation
    Korner, C
    Mayerhofer, R
    Hartmann, M
    Bergmann, HW
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 1996, 63 (02): : 123 - 131
  • [29] Comparative study of the ablation of materials by femtosecond and pico- or nanosecond laser pulses
    Kononenko, TV
    Konov, VI
    Garnov, SV
    Danielius, R
    Piskarskas, A
    Tamoshauskas, G
    Dausinger, F
    QUANTUM ELECTRONICS, 1999, 29 (08) : 724 - 728
  • [30] Ablation of CVD diamond with nanosecond laser pulses of UV-IR range
    Kononenko, TV
    Ralchenko, VG
    Vlasov, II
    Garnov, SV
    Konov, VI
    DIAMOND AND RELATED MATERIALS, 1998, 7 (11-12) : 1623 - 1627