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Titlebook: Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites; Andrei Stalmashonak,Gerhard Seifert,Amin Abdolvand Book 2013 The Author(s)

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楼主: commotion
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,“Off-Resonant” Excitation: Irradiation Wavelength Dependence,particles. In the previous chapter we have seen that the position of the p-polarized SP band can only be red-shifted by a limited amount (to a peak position of 530 nm when using fs laser pulses at 400 nm). Any further increase in intensity or number of pulses applied to one sample position leads to
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The Effect of Temperature on the Laser-Induced Modifications of Ag Nanoparticles, the effects of temperature during the reshaping processes. As discussed in Chap. 3, upon absorbing the energy of the laser pulse, the NP and its surrounding matrix experience a strong temperature increase of several hundred degrees for a time window of some ten picoseconds to a few nanoseconds. The
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Book 2013s (SPRs) of the nanoparticles. The spectral position in the visible and near-infrared range and polarization dependence of the SPR are characteristically determined by the nanoparticles’ shapes. .The focus of .Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites. is the interaction of inte
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,“Off-Resonant” Excitation: Irradiation Wavelength Dependence,sition of 530 nm when using fs laser pulses at 400 nm). Any further increase in intensity or number of pulses applied to one sample position leads to bleaching of the SP bands, which can be explained by (partial) nanoparticle destruction.
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The Effect of Temperature on the Laser-Induced Modifications of Ag Nanoparticles,ounding matrix experience a strong temperature increase of several hundred degrees for a time window of some ten picoseconds to a few nanoseconds. The pertinent softening of the adjacent glass matrix is crucial for the NP to have some degrees of freedom for the expansion and shape changes.
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ns of experts from the EUREC Agency, the document ‘Renewable Energy - 2000‘ has been elaborated. This document critically evaluates the potential of renewable energies, focusing on the most relevant sources and methodologies, namely: wind energy, solar heating, cooling and daylighting, photovoltaics
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