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Bi2Te3 photoconductive detectors on Si

J. J. Liu ; Y. Y. Li ; Y. X. Song ; Y. J. Ma ; Q. M. Chen ; Z. Y. S. Zhu ; P. F. Lu ; Shumin Wang (Institutionen för mikroteknologi och nanovetenskap, Fotonik)
Applied Physics Letters (0003-6951). Vol. 110 (2017), 14,
[Artikel, refereegranskad vetenskaplig]

The peculiar properties of the gapless surface states with a Dirac cone shaped energy dispersion in topological insulators (TIs) enable promising applications in photodetection with an ultra-broad band and polarization sensitivity. Since many TIs can be easily grown on silicon (Si) substrates, TIs on Si could make an alternative route for photon detection of Si photonics. We present good device performances of a Si-based single-crystal bismuth telluride (Bi2Te3) photoconductive detector. Room temperature photo responses to 1064 nm and 1550 nm light illumination were demonstrated. Linear dependences of the photocurrent on both the incident light power and the bias voltage were observed. The main device parameters including responsivity and quantum efficiency were extracted. Published by AIP Publishing.

Nyckelord: Ultrafast Graphene Photodetector, Topological Insulator Film, High, Responsivity, Thin-Films, Silicon, Temperature, SB2TE3, BI2SE3



Denna post skapades 2017-05-15. Senast ändrad 2017-05-18.
CPL Pubid: 249333

 

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Institutioner (Chalmers)

Institutionen för mikroteknologi och nanovetenskap, Fotonik

Ämnesområden

Nanoteknik

Chalmers infrastruktur