Terahertz detectors based on graphene

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Abstract

In this study we present magnetotransport an magnetooptical data obtained in the magnetic field range 0T < B < 7T at detectors patterned in Corbino geometry on epitaxial graphene wafer using a Ge detector. We observed the cyclotron resonance of charge carriers in these wafers by measurement of the transmission of THz wafes through the unpatterned squares (about 4 × 4mm2) of the wafers as a function of the magnetic field B applied perpendicular to the wafer. Further, we performed measurements of the photocunductivity of graphene-based devices shaped in Corbino geometry, induced by terahertz (THz) radiation generated by a p-Ge laser (emitting in the energy range 7.5meV ≤ Eph ≤ 11meV). Our photoconductivity measurement imply that graphene devices are suitable for the detection of terahertz radiation. © Published under licence by IOP Publishing Ltd.

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Gouider, F., Salman, M., Göthlich, M., Schmidt, H., Ahlers, F. J., Haug, R., & Nachtwei, G. (2013). Terahertz detectors based on graphene. In Journal of Physics: Conference Series (Vol. 456). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/456/1/012011

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