Terahertz heterodyne imaging with InGaAs-based bow-tie diodes

Room-temperature detection and imaging in transmission and reflection geometries at 0.591 THz with planar asymmetrically shaped InGaAs diodes (also called bow-tie diodes) are demonstrated in direct and heterodyne mode. The sensitivity of the diodes is found to be 6 V/W in direct mode, and the noise-...

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Veröffentlicht in:Applied physics letters 2011-09, Vol.99 (13), p.131101-131101-3
Hauptverfasser: Minkevičius, Linas, Tamošiūnas, Vincas, Kašalynas, Irmantas, Seliuta, Dalius, Valušis, Gintaras, Lisauskas, Alvydas, Boppel, Sebastian, Roskos, Hartmut G., Köhler, Klaus
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Sprache:eng
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Zusammenfassung:Room-temperature detection and imaging in transmission and reflection geometries at 0.591 THz with planar asymmetrically shaped InGaAs diodes (also called bow-tie diodes) are demonstrated in direct and heterodyne mode. The sensitivity of the diodes is found to be 6 V/W in direct mode, and the noise-equivalent power (NEP) in direct and heterodyne mode is estimated to be about 4 nW / H z and 230 fW/Hz for a local-oscillator power of 11 μ W, respectively. The improvement of the dynamic range by heterodyning over direct power detection amounts to about 20 dB using pixel read-out times relevant to real-time imaging conditions.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.3641907