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Proceedings Paper

Multispectral infrared photodetector with carbon nanotube flexible electronic circuits
Author(s): Wen Hong; Puminun Vasinajindakaw; Jarrod Vaillancourt; Haiyan Zhang; Guiru Gu; Runyu Liu; Xuejun Lu; Xifeng Qian; Shivashankar R. Vangala; William D. Goodhue
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Paper Abstract

We report a voltage-tunable multispectral quantum dot infrared photodetector with integrated carbon-nanotube based flexible electronics. Such integrated photodetection and flexible electronics would not only enhance the detectors functionalities, but also reduce the time delay by performing image processing locally, making it promising for adaptive multi-spectral photodetection and sensing.

Paper Details

Date Published: 5 May 2010
PDF: 9 pages
Proc. SPIE 7679, Micro- and Nanotechnology Sensors, Systems, and Applications II, 767906 (5 May 2010); doi: 10.1117/12.850701
Show Author Affiliations
Wen Hong, Univ. of Massachusetts Lowell (United States)
Puminun Vasinajindakaw, Univ. of Massachusetts Lowell (United States)
Jarrod Vaillancourt, Applied NanoFemto Technologies, LLC (United States)
Haiyan Zhang, Univ. of Massachusetts Lowell (United States)
Guiru Gu, Univ. of Massachusetts Lowell (United States)
Runyu Liu, Univ. of Massachusetts Lowell (United States)
Xuejun Lu, Univ. of Massachusetts Lowell (United States)
Xifeng Qian, Univ. of Massachusetts Lowell (United States)
Shivashankar R. Vangala, Univ. of Massachusetts Lowell (United States)
William D. Goodhue, Univ. of Massachusetts Lowell (United States)


Published in SPIE Proceedings Vol. 7679:
Micro- and Nanotechnology Sensors, Systems, and Applications II
Thomas George; M. Saif Islam; Achyut Kumar Dutta, Editor(s)

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