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September 11, 2008Physical Review Letters342 citationsOpen Access

Experimental Realization of Highly Efficient Broadband Coupling of Single Quantum Dots to a Photonic Crystal Waveguide

TLToke Lund-HansenSSSøren StobbeBJBrian Julsgaard

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Abstract

We present time-resolved spontaneous emission measurements of single quantum dots embedded in photonic crystal waveguides. Quantum dots that couple to a photonic crystal waveguide are found to decay up to 27 times faster than uncoupled quantum dots. From these measurements beta-factors of up to 0.89 are derived, and an unprecedented large bandwidth of 20 nm is demonstrated. This shows the promising potential of photonic crystal waveguides for efficient single-photon sources. The scaled frequency range over which the enhancement is observed is in excellent agreement with recent theoretical proposals taking into account that the light-matter coupling is strongly enhanced due to the significant slow-down of light in the photonic crystal waveguides.

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Lund-Hansen et al. (2008) studied this question.

synapsesocial.com/papers/6a08595fad370a6b44de0c1ahttps://doi.org/10.1103/physrevlett.101.113903
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