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Effects of ion and nanosecond-pulsed laser co-irradiation on the surface nanostructure of Au thin films on SiO2 glass substrates.

Authors :
Ruixuan Yu
Shibayama, Tamaki
Xuan Meng
Takayanagi, Shinya
Yatsu, Shigeo
Ishioka, Junya
Watanabe, Seiichi
Source :
Journal of Applied Physics; 2014, Vol. 115 Issue 14, p143104-1-143104-8, 8p, 3 Black and White Photographs, 3 Charts, 3 Graphs
Publication Year :
2014

Abstract

Ion irradiation and short-pulsed laser irradiation can be used to form nanostructures on the surfaces of substrates. This work investigates the synergistic effects of ion and nanosecond-pulsed laser co-irradiation on surface nanostructuring of Au thin films deposited under vacuum on SiO<subscript>2</subscript> glass substrates. Gold nanoparticles are randomly formed on the surface of the substrate after nanosecond-pulsed laser irradiation under vacuum at a wavelength of 532 nm with a repetition rate of 10 Hz and laser energy density of 0.124 kJ/m<superscript>2</superscript>. Gold nanoparticles are also randomly formed on the substrate after 100-keV Ar<superscript>+</superscript> ion irradiation at doses of up to 3.8×10<superscript>15</superscript> ions/cm<superscript>2</superscript>, and nearly all of these nanoparticles are fully embedded in the substrate. With increasing ion irradiation dose (number of incident laser pulses), the mean diameter of the Au nanoparticles decreases (increases). However, Au nanoparticles are only formed in a periodic surface arrangement after co-irradiation with 6000 laser pulses and 3.8×10<superscript>15</superscript> ions/cm<superscript>2</superscript>. The periodic distance is ∼540 nm, which is close to the wavelength of the nanosecond-pulsed laser, and the mean diameter of the Au nanoparticles remains at ∼20 nm with a relatively narrow distribution. The photoabsorption peaks of the ion- or nanosecond-pulsed laser-irradiated samples clearly correspond to the mean diameter of Au nanoparticles. Conversely, the photoabsorption peaks for the co-irradiated samples do not depend on the mean nanoparticle diameter. This lack of dependence is likely caused by the periodic nanostructure formed on the surface by the synergistic effects of co-irradiation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
115
Issue :
14
Database :
Complementary Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
95619128
Full Text :
https://doi.org/10.1063/1.4871016