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Study the plasmonic property of gold nanorods highly above damage threshold via single-pulse spectral hole-burning experiments. | LitMetric

Intense femtosecond laser irradiation reshapes gold nanorods, resulting in a persistent hole in the optical absorption spectrum of the nanorods at the wavelength of the laser. Single-pulse hole-burning experiments were performed in a mixture of nanorods with a broad absorption around 800 nm with a 35-fs laser with 800 nm wavelength and 6 mJ/pulse. A significant increase in hole burning width at an average fluence of 10 J/m has been found, suggesting a tripled damping coefficient of plasmon. This shows that the surface plasmonic effect still occurs at extremely high femtosecond laser fluences just before the nanorods are damaged and the remaining 10% plasmonic enhancement of light is at the fluence of 10 J/m, which is several orders of magnitude higher than the damage threshold of the gold nanorods. Plasmon-photon interactions may also cause an increase in the damping coefficient.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8593184PMC
http://dx.doi.org/10.1038/s41598-021-01195-5DOI Listing

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