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  4. cw-THz receivers based on rhodium-doped InGaAs with 125 dB peak dynamic range
 
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2024
Conference Paper
Title

cw-THz receivers based on rhodium-doped InGaAs with 125 dB peak dynamic range

Abstract
We report on novel continuous wave (cw) photoconductive terahertz (THz) receivers based on rhodium (Rh) doped indium gallium arsenide grown by molecular beam epitaxy. The Rh-doped material exhibits outstanding charge carrier mobility up to 1800 cm2/Vs while maintaining ultrashort carrier lifetimes between 0.26 and 1.5 ps. The photoconductive antennas (PCAs) made from this material exhibit a THz responsivity significantly improved by a factor of 20 to 100, which overcompensates their slightly higher noise levels. In a homodyne coherent THz spectroscopy setup, these novel receivers enable us to measure THz spectra with a record peak dynamic range up to 125 dB and a spectral bandwidth of 4.5 THz. This is an improvement of 13 dB over the previous record with InGaAs:Fe-based PCAs and leads to improved accuracy and measurement speed in cw-THz spectroscopy.
Author(s)
Deumer, Milan
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Breuer, Steffen  
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Keyvaninia, Shahram
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Dohms, Alexander
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Nellen, Simon  
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Nguyen, Chris Phong Van
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Liebermeister, Lars
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Schell, Martin  
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Kohlhaas, Robert
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Mainwork
Terahertz, RF, Millimeter, and Submillimeter-Wave Technology and Applications XVII  
Conference
Conference "Terahertz, RF, Millimeter, and Submillimeter-Wave Technology and Applications" 2024  
DOI
10.1117/12.3003109
Language
English
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut HHI  
Keyword(s)
  • 1550 nm excitation

  • Continuous wave

  • Photoconductive antenna

  • Rhodium doping

  • Terahertz

  • Terahertz receiver

  • Terahertz spectroscopy

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