Black Phosphorus Photodetector for Multispectral, High-Resolution Imaging

Black phosphorus is a layered semiconductor that is intensely researched in view of applications in optoelectronics. In this letter, we investigate a multilayer black phosphorus photodetector that is capable of acquiring high-contrast (V > 0.9) images both in the visible (λVIS = 532 nm) as well a...

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Veröffentlicht in:Nano letters 2014-11, Vol.14 (11), p.6414-6417
Hauptverfasser: Engel, Michael, Steiner, Mathias, Avouris, Phaedon
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Sprache:eng
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Zusammenfassung:Black phosphorus is a layered semiconductor that is intensely researched in view of applications in optoelectronics. In this letter, we investigate a multilayer black phosphorus photodetector that is capable of acquiring high-contrast (V > 0.9) images both in the visible (λVIS = 532 nm) as well as in the infrared (λIR = 1550 nm) spectral regime. In a first step, by using photocurrent microscopy, we map the active area of the device and we characterize responsivity and gain. In a second step, by deploying the black phosphorus device as a point-like detector in a confocal microsope setup, we acquire diffraction-limited optical images with submicron resolution. The results demonstrate the usefulness of black phosphorus as an optoelectronic material for hyperspectral imaging applications.
ISSN:1530-6984
1530-6992
DOI:10.1021/nl502928y