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Excitation, detection, and electrostatic manipulation of terahertz-frequency range plasmons in a two-dimensional electron system.


ABSTRACT: Terahertz frequency time-domain spectroscopy employing free-space radiation has frequently been used to probe the elementary excitations of low-dimensional systems. The diffraction limit, however, prevents its use for the in-plane study of individual laterally-defined nanostructures. Here, we demonstrate a planar terahertz frequency plasmonic circuit in which photoconductive material is monolithically integrated with a two-dimensional electron system. Plasmons with a broad spectral range (up to?~?400?GHz) are excited by injecting picosecond-duration pulses, generated and detected by a photoconductive semiconductor, into a high mobility two-dimensional electron system. Using voltage modulation of a Schottky gate overlying the two-dimensional electron system, we form a tuneable plasmonic cavity, and observe electrostatic manipulation of the plasmon resonances. Our technique offers a direct route to access the picosecond dynamics of confined electron transport in a broad range of lateral nanostructures.

SUBMITTER: Wu J 

PROVIDER: S-EPMC4614073 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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Excitation, detection, and electrostatic manipulation of terahertz-frequency range plasmons in a two-dimensional electron system.

Wu Jingbo J   Mayorov Alexander S AS   Wood Christopher D CD   Mistry Divyang D   Li Lianhe L   Muchenje Wilson W   Rosamond Mark C MC   Chen Li L   Linfield Edmund H EH   Davies A Giles AG   Cunningham John E JE  

Scientific reports 20151021


Terahertz frequency time-domain spectroscopy employing free-space radiation has frequently been used to probe the elementary excitations of low-dimensional systems. The diffraction limit, however, prevents its use for the in-plane study of individual laterally-defined nanostructures. Here, we demonstrate a planar terahertz frequency plasmonic circuit in which photoconductive material is monolithically integrated with a two-dimensional electron system. Plasmons with a broad spectral range (up to   ...[more]

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