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Back focal plane imaging of directional emission from dye molecules coupled to one-dimensional photonic crystals.


ABSTRACT: Bloch surface waves (BSWs) on one-dimensional photonic crystals (1DPCs) have been used to beam the fluorescence emission from the dye molecules. All dielectric 1DPC displays its low propagating loss, narrow resonance and the absence of absorption or quenching. In this paper, back focal plane imaging reveals that in addition to the BSW mode, a guided mode and a cavity mode also exist in the 1DPC which all couple with the excited dye molecules. The appearance of these modes is sensitive to the wavelength of the fluorescence and alters the beaming effect by the 1DPC. Numerical simulations verify the existence of these modes which are consistent with the experimental results. Comparisons between the Bloch surface wave coupled emission and surface plasmon coupled emission are also presented for a clearer understanding of the multilayered film enabled directional emission.

SUBMITTER: Zhang D 

PROVIDER: S-EPMC4015633 | biostudies-literature | 2014 Apr

REPOSITORIES: biostudies-literature

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Back focal plane imaging of directional emission from dye molecules coupled to one-dimensional photonic crystals.

Zhang Douguo D   Badugu Ramachandram R   Chen Yikai Y   Yu Sisheng S   Yao Peijun P   Wang Pei P   Ming Hai H   Lakowicz Joseph R JR  

Nanotechnology 20140312 14


Bloch surface waves (BSWs) on one-dimensional photonic crystals (1DPCs) have been used to beam the fluorescence emission from the dye molecules. All dielectric 1DPC displays its low propagating loss, narrow resonance and the absence of absorption or quenching. In this paper, back focal plane imaging reveals that in addition to the BSW mode, a guided mode and a cavity mode also exist in the 1DPC which all couple with the excited dye molecules. The appearance of these modes is sensitive to the wav  ...[more]

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