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This article is cited in 9 scientific papers (total in 9 papers)
Interaction of laser radiation with matter
Symmetric nanostructuring and plasmonic excitation of gold nanostructures by femtosecond Laguerre–Gaussian laser beams
N. I. Busleevab, S. I. Kudryashovac, P. A. Danilova, A. P. Porfirevbd, I. N. Saraevaab, A. A. Rudenkoa, S. F. Umanskayaacb, D. A. Zayarnyiab, A. A. Ionina, S. N. Khoninabd a P. N. Lebedev Physical Institute of the Russian Academy of Sciences, Moscow
b Samara National Research University
c National Engineering Physics Institute "MEPhI", Moscow
d Image Processing Systems Institute of the RAS - Branch of the FSRC "Crystallography and Photonics" RAS, Samara, Russia, Samara
Abstract:
Femtosecond low-energy Laguerre–Gaussian pulses of tightly focused visible laser radiation were employed for singlepulse ablative nanostructuring of a 50-nm thick gold film. Similar pulses of lower energy were employed for the efficient plasmonic photoluminescence excitation of a rhodamine 6G dye monolayer in the fabricated nanostructures. The consistency between the shape and polarisation symmetries of the low-energy laser beam, on the one hand, and the gold nanostructures produced by the same beam at a high radiation energy, on the other hand, opens the way to consistent nanostructuring and surface-enhanced analytical spectroscopy with the use of nanostructures.
Keywords:
thin-film nanotexturing, femtosecond laser pulses, Laguerre–Gaussian beams, polarisation states, dye photoluminescence, surface electromagnetic waves.
Received: 25.10.2018 Revised: 27.11.2018
Citation:
N. I. Busleev, S. I. Kudryashov, P. A. Danilov, A. P. Porfirev, I. N. Saraeva, A. A. Rudenko, S. F. Umanskaya, D. A. Zayarnyi, A. A. Ionin, S. N. Khonina, “Symmetric nanostructuring and plasmonic excitation of gold nanostructures by femtosecond Laguerre–Gaussian laser beams”, Kvantovaya Elektronika, 49:7 (2019), 666–671 [Quantum Electron., 49:7 (2019), 666–671]
Linking options:
https://www.mathnet.ru/eng/qe17076 https://www.mathnet.ru/eng/qe/v49/i7/p666
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Abstract page: | 202 | Full-text PDF : | 30 | References: | 33 | First page: | 14 |
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