Abstract

We present the application of spectral emission imaging microscopy as a method to quantitatively map photonic properties from below the surface of strongly interacting photonic three-dimensional (3D) crystals. We excite emission from emitters deep inside a photonic crystal and record the local emission spectra with micrometer lateral resolution. The recorded directional emission spectra are modified by Bragg diffraction, which we use to determine the local stop-band attenuation, center frequency, and width. Assembling the values obtained into spatial maps yields detailed access to the distributions of the local photonic properties below the crystal surface. We demonstrate this approach by analyzing the emission from the fluorescent protein DsRed2 infiltrated inside self-organized 3D titanium dioxide inverse opals.

URL

https://opg.optica.org/josab/abstract.cfm?uri=josab-26-11-2101

Authors

C. Blum, A. P. Mosk, C. Otto, W. L. Vos, and V. Subramaniam

Year of publication

2009

Date published

10/2009

Journal

J. Opt. Soc. Am. B

Volume

26

Pages

2101-2108

DOI number

10.1364/JOSAB.26.002101

Keywords

3D photonic crystals, below surface, fluorescence protein, optical microscopy