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1.
Nano Lett ; 9(7): 2630-5, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19527043

RESUMO

The opportunities and challenges of realizing sophisticated functionality by assembling many nanoscale devices, while covering large areas, remain for the most part unrealized and unresolved. In this work, we demonstrate the successful fabrication of an eight-device cascaded optoelectronic fiber structure in which components down to 100 nm are individually electrically addressed and can operate collectively to deliver novel functionality over large area coverage. We show that a tandem arrangement of subwavelength photodetecting devices integrated in a single fiber enables the extraction of information on the direction, wavelength, and potentially even color of incident radiation over a wide spectral range in the visible regime. Finally, we fabricated a 0.1 square meter single plane fiber assembly which uses polychromatic illumination to extract images without the use of a lens, representing an important step toward ambient light imaging fabrics.


Assuntos
Eletrônica/instrumentação , Modelos Teóricos , Nanotecnologia , Fibras Ópticas , Eletrodos , Microscopia Eletrônica de Varredura , Dispositivos Ópticos
2.
Opt Express ; 14(9): 3929-35, 2006 May 01.
Artigo em Inglês | MEDLINE | ID: mdl-19516540

RESUMO

All fiber lasers to date emit radiation only along the fiber axis. Here a fiber that exhibits laser emission that is radially directed from its circumferential surface is demonstrated. A unique and controlled azimuthally anisotropic optical wave front results from the interplay between a cylindrical photonic bandgap fiber resonator, anisotropic organic dye gain, and a linearly polarized axial pump. Low threshold (86nJ) lasing at nine different wavelengths is demonstrated throughout the visible and near-infrared spectra. We also report the experimental realization of unprecedented layer thicknesses of 29.5 nm maintained throughout meter-long fibers. Such a device may have interesting medical applications ranging from photodynamic therapy to in vivo molecular imaging, as well as textile fabric displays.

3.
Adv Mater ; 22(37): 4162-6, 2010 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-20730810

RESUMO

The in situ crystallization of the incorporated amorphous semiconductor within the multimaterial fiber device yields a large decrease in defect density and a concomitant five-order-of-magnitude decrease in resistivity of the novel metal-insulator-crystalline semiconductor structure. Using a post-drawing crystallization process, the first tens-of-meters-long single-fiber field-effect device is demonstrated. This work opens significant opportunities for incorporating higher functionality in functional fibers and fabrics.


Assuntos
Semicondutores/instrumentação , Calcogênios/química , Cristalização , Eletrodos , Cinética , Metais/química
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