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  4. Electrically Tunable Si-based THz Photomodulator Using Dielectric/Polymer Surface Gating
 
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2025
Journal Article
Title

Electrically Tunable Si-based THz Photomodulator Using Dielectric/Polymer Surface Gating

Abstract
Silicon-based terahertz (THz) photomodulators suffer from a modulation speed limited by the lifetime of the charge carriers photoexcited in the silicon. We report a silicon-based THz photomodulator scheme offering real-time reconfiguration of the switching behavior by manipulation of effective charge carrier lifetime. Atomic layer deposition was used to coat silicon samples with dielectric layers to passivate the surfaces with a conductive polymer (PEDOT:PSS) subsequently deposited to enable electrical gating over the whole surface. The resulting gated photomodulators are characterized using photoconductance decay and photoluminescence imaging. A gated photomodulator with HfO2 passivation is then implemented into a THz time domain spectroscopy setup to demonstrate the potential for live photomodulation optimization during a single-pixel imaging experiment. We use the device to achieve a real-time improvement of the signal-to-noise ratio of the images by a factor of 8.
Author(s)
Romain, Xavier
University of Warwick
Wilshaw, Peter R.
University of Oxford, Department of Materials
Stantchev, Rayko I.
University of Warwick
Miao, Tina
University of Warwick
Muo, Sen
University of Warwick
Niewelt, Tim  
Fraunhofer-Institut für Solare Energiesysteme ISE  
McNab, Shona
University of Oxford, Department of Materials
Pain, Sophie L.
University of Warwick
Grant, Nicholas E.
University of Warwick
Bonilla, Ruy S.
University of Oxford, Department of Materials
Pickwell-MacPherson, Emma
University of Warwick
Murphy, John D.
University of Warwick
Journal
IEEE Transactions on Terahertz Science and Technology  
DOI
10.1109/TTHZ.2024.3477983
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
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