Abstract
Flexible photonic crystal slabs with an area of 2 cm2 are fabricated by nanoimprint replication of a 400 nm period linear grating nanostructure into a ≈60 μm thick polydimethylsiloxane membrane and subsequent spin coating of a high refractive index titanium dioxide nanoparticle layer. Samples are prepared with different nanoparticle concentrations. Guided-mode resonances with a quality factor of Q ≈40 are observed. The highly flexible nature of the membranes allows for stretching of up to 20% elongation. Resonance peak positions for unstretched samples vary from 555 to 630 nm depending on the particle concentration. Stretching results in a resonance shift for these peaks of up to ≈80 nm, i.e., 3.9 nm per % strain. The color impression of the samples observed with crossed-polarization filters changes from the green to the red regime. The high tunability renders these membranes promising for both tunable optical devices as well as visualization devices.
Author supplied keywords
Cite
CITATION STYLE
Karrock, T., Paulsen, M., & Gerken, M. (2017). Flexible photonic crystal membranes with nanoparticle high refractive index nanoparticle layers. Beilstein Journal of Nanotechnology, 8(1), 203–209. https://doi.org/10.3762/bjnano.8.22
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.