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Published on: November 22, 2019
Voltage-controlled compression for period tuning of optical surface relief gratings
Matthias Kollosche1, Sebastian Döring, Joachim Stumpe
1Universität Potsdam, Applied Condensed-Matter Physics, Institut für Physik und Astronomie, Karl-Liebknecht-Strasse 24/25, 14476 Potsdam, Germany. matthias.kollosche@uni‐potsdam.de
Abstract:
This Letter reports on new methods and a consistent model for voltage tunable optical transmission gratings. Elastomeric gratings were molded from holographically written surface relief gratings in an azobenzene sol-gel material. These were placed on top of a transparent electroactive elastomeric substrate. Two different electro-active substrate elastomers were employed, with a large range of prestretches. A novel finite-deformation theory was found to match the device response excellently, without fitting parameters. The results clearly show that the grating underwent pure-shear deformation, and more surprisingly, that the mechanical properties of the electro-active substrate did not affect device actuation.

