Surface State-Dominated Photoconduction and THz Generation in Topological Bi2Te2Se Nanowires

Topological insulators constitute a fascinating class of quantum materials with nontrivial, gapless states on the surface and insulating bulk states. By revealing the optoelectronic dynamics in the whole range from femto- to microseconds, we demonstrate that the long surface lifetime of Bi2Te2Se nan...

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Veröffentlicht in:Nano letters 2017-02, Vol.17 (2), p.973-979
Hauptverfasser: Seifert, Paul, Vaklinova, Kristina, Kern, Klaus, Burghard, Marko, Holleitner, Alexander
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Sprache:eng
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Zusammenfassung:Topological insulators constitute a fascinating class of quantum materials with nontrivial, gapless states on the surface and insulating bulk states. By revealing the optoelectronic dynamics in the whole range from femto- to microseconds, we demonstrate that the long surface lifetime of Bi2Te2Se nanowires allows us to access the surface states by a pulsed photoconduction scheme and that there is a prevailing bolometric response of the surface states. The interplay of the surface and bulk states dynamics on the different time scales gives rise to a surprising physical property of Bi2Te2Se nanowires: their pulsed photoconductance changes polarity as a function of laser power. Moreover, we show that single Bi2Te2Se nanowires can be used as THz generators for on-chip high-frequency circuits at room temperature. Our results open the avenue for single Bi2Te2Se nanowires as active modules in optoelectronic high-frequency and THz circuits.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.6b04312