Two-dimensional laser-induced periodic surface structures with a deep-subwavelength periodicity (80 nm ≈ λ/10) are obtained for the first time on diamond surfaces. The distinctive surface nanotexturing is achieved by employing a single step technique that relies on irradiation with two temporally delayed and cross-polarized femtosecond-laser pulses (100 fs duration, 800 nm wavelength, 1 kHz repetition rate) generated with a Michelson-like interferometer configuration, followed by chemical etching of surface debris. In this Letter, we demonstrate that, if the delay between two consecutive pulses is ≤2 ps, the 2D periodicity of nanostructures can be tuned by controlling the number of pulses irradiating the surface. Under scanning mode, the method is effective in treating uniformly large areas of diamond, so to induce remarkable antireflection properties able to enhance the absorptance in the visible up to 50 times and to pave the route toward the creation of metasurfaces for future diamond-based optoelectronic devices.

Mastellone, M., Bellucci, A., Girolami, M., Serpente, V., Polini, R., Orlando, S., et al. (2021). Deep-subwavelength 2D periodic surface nanostructures on diamond by double-pulse femtosecond laser irradiation. NANO LETTERS, 21(10), 4477-4483 [10.1021/acs.nanolett.1c01310].

Deep-subwavelength 2D periodic surface nanostructures on diamond by double-pulse femtosecond laser irradiation

Polini R.;
2021-05-07

Abstract

Two-dimensional laser-induced periodic surface structures with a deep-subwavelength periodicity (80 nm ≈ λ/10) are obtained for the first time on diamond surfaces. The distinctive surface nanotexturing is achieved by employing a single step technique that relies on irradiation with two temporally delayed and cross-polarized femtosecond-laser pulses (100 fs duration, 800 nm wavelength, 1 kHz repetition rate) generated with a Michelson-like interferometer configuration, followed by chemical etching of surface debris. In this Letter, we demonstrate that, if the delay between two consecutive pulses is ≤2 ps, the 2D periodicity of nanostructures can be tuned by controlling the number of pulses irradiating the surface. Under scanning mode, the method is effective in treating uniformly large areas of diamond, so to induce remarkable antireflection properties able to enhance the absorptance in the visible up to 50 times and to pave the route toward the creation of metasurfaces for future diamond-based optoelectronic devices.
7-mag-2021
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/03 - CHIMICA GENERALE E INORGANICA
English
Con Impact Factor ISI
diamond; laser; LIPSSs; metasurface; surface texturing
Mastellone, M., Bellucci, A., Girolami, M., Serpente, V., Polini, R., Orlando, S., et al. (2021). Deep-subwavelength 2D periodic surface nanostructures on diamond by double-pulse femtosecond laser irradiation. NANO LETTERS, 21(10), 4477-4483 [10.1021/acs.nanolett.1c01310].
Mastellone, M; Bellucci, A; Girolami, M; Serpente, V; Polini, R; Orlando, S; Santagata, A; Sani, E; Hitzel, F; Trucchi, Dm
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/275349
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