We demonstrate the ability to control the spontaneous emission dynamics of self-assembled quantum dots via the local density of optical modes in 2D-photonic crystals. We show that an incomplete 2D photonic bandgap is sufficient to significantly lengthen the spontaneous emission lifetime (>2×) over a wide bandwidth (Δλ≥40 nm). For dots that are both \textit{spectrally} and \textit{spatially} coupled to strongly localized (Vmode∼1.5(λ/n)3), high Q∼2700 optical modes, we have directly measured a strong Purcell enhanced shortening of the emission lifetime ≥5.6×, limited only by our temporal resolution. Analysis of the spectral dependence of the recombination dynamics shows a maximum lifetime shortening of 19±4. From the directly measured enhancement and suppression we show that the single mode coupling efficiency for quantum dots in such structures is at least β=92 and is estimated to be as large as ∼97.
@article{arxiv.quant-ph/0501013,
title = {Manipulation of the Spontaneous Emission Dynamics of Quantum Dots in 2D Photonic Crystals},
author = {A. Kress and F. Hofbauer and N. Reinelt and H. J. Krenner and R. Meyer and G. Boehm and J. J. Finley},
journal= {arXiv preprint arXiv:quant-ph/0501013},
year = {2007}
}