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Lithographic positioning of fluorescent molecules on high-Q photonic crystal cavities

Appl. Phys. Lett. 95, 123113 (2009); doi:10.1063/1.3232233

Published 23 September 2009

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Kelley Rivoire,1 Anika Kinkhabwala,2 Fariba Hatami,3 W. Ted Masselink,3 Yuri Avlasevich,4 Klaus Müllen,4 W. E. Moerner,2 and Jelena Vučković1
1Department of Electrical Engineering, Stanford University, Stanford, California 94305-4085, USA
2Department of Chemistry, Stanford University, Stanford, California 94305-4085, USA
3Department of Physics, Humboldt University, D-10115 Berlin, Germany
4Max-Planck Institute for Polymer Research, D-55124 Mainz, Germany

Photoluminescent molecules are coupled to high quality photonic crystal nanocavities. The cavities are fabricated in a gallium phosphide membrane and show resonances from 735 to 860 nm with quality factors up to 12 000. The molecules, which are dispersed in a thin polymer film deposited on top of the cavities, can be selectively positioned onto the location of the cavity by using a lithographic technique, which is easily scalable to arrays of cavities. ©2009 American Institute of Physics
History: Received 5 July 2009; accepted 31 August 2009; published 23 September 2009
Permalink: http://link.aip.org/link/?APPLAB/95/123113/1
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KEYWORDS and PACS

Keywords
PACS
  • 85.40.Hp
    Lithography, masks and pattern transfer (microelectronics)
  • 42.70.Qs
    Photonic bandgap materials
  • 78.55.Hx
    Photoluminescence in solid inorganic materials
  • YEAR: 2009

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PUBLICATION DATA

ISSN:
0003-6951 (print)   1077-3118 (online)
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