Presentation + Paper
23 September 2016 Femtosecond light-induced macromolecular self-assembly
Aleksander Rebane, Alexander Mikhaylov
Author Affiliations +
Abstract
We report femtosecond light-induced macromolecular self-assembly (FLIMSA), which is observed when a high peak intensity femtosecond laser beam propagates through aqueous solution of pseudoisocyanine iodide (PIC) J-aggregates and induces the formation of 0.1 – 1.0 mm-size tube-like structure surrounding the laser beam, while at the same time allowing the beam to continue propagating without obstruction or scattering. The FLIMSA material is morphologically heterogeneous and gel-like and is formed at the margins rather than at the center of the beam. As a potential explanation of this effect we assume that the FLIMSA is induced by the high photon flux gradient characteristic of the femtosecond laser beam periphery. This hypothesis is corroborated by control experiments, where J-aggregate samples were illuminated with nanosecond laser sources with a varying pulse duration, power- and beam shape characteristics, but where no FLIMSA formation was observed.
Conference Presentation
© (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Aleksander Rebane and Alexander Mikhaylov "Femtosecond light-induced macromolecular self-assembly", Proc. SPIE 9939, Light Manipulating Organic Materials and Devices III, 99390D (23 September 2016); https://doi.org/10.1117/12.2237867
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KEYWORDS
Femtosecond phenomena

Photonic integrated circuits

Absorption

Optical amplifiers

Beam shaping

Laser beam propagation

Laser scattering

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