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  4. Engineering the carrier lifetime and switching speed in Si-based mm-wave photomodulators
 
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2022
Journal Article
Title

Engineering the carrier lifetime and switching speed in Si-based mm-wave photomodulators

Abstract
For a diverse range of semiconductor devices, the charge carrier lifetime is an essential characteristic. However, the carrier lifetime is difficult to control, as it is usually determined by a variety of recombination processes. For indirect bandgap materials, it is well known that effective carrier lifetimes can be improved by passivating the surface, effectively extinguishing surface-related recombination processes. However, for some applications, such as photomodulators for sub-infrared radiation, it is beneficial to tailor lifetimes to specific values, in this particular case trading off between photo-efficiency and switching speed. In this paper, we design a new type of silicon-based metamaterial with a tunable electron-hole lifetime. By periodically patterning a dielectric surface passivation layer, we create a metamaterial whereby the filling fraction of passivated relative to unpassivated areas dictates the effective charge carrier lifetime. We demonstrate tunable lifetimes between 200 μs and 8ms in a 670 μm thick Si wafer, though in principle our approach allows one to generate any lifetime between the fully passivated and unpassivated limits of a bulk semiconductor. Finally, we investigate the application of these metamaterials as photomodulators, finding switching times that depend upon both the photoexcitation intensity, wafer thickness, and the carrier lifetime.
Author(s)
Hooper, Ian R.
University of Exeter  
Khorani, Edris
University of Warwick
Romain, Xavier
University of Warwick
Barr, Lauren E.
University of Exeter
Niewelt, Tim  
Fraunhofer-Institut für Solare Energiesysteme ISE  
Saxena, Sonal
University of Exeter
Wratten, Ailish
University of Warwick
Grant, Nicholas E.
University of Warwick
Murphy, John D.
University of Warwick
Hendry, Euan
University of Exeter
Journal
Journal of applied physics  
Open Access
DOI
10.1063/5.0128234
10.24406/publica-859
File(s)
Hooper_JAP2022_Engineering the carrier lifetime and switching speed in Si-based mm-wave photomodulators.pdf (1.94 MB)
Rights
CC BY 4.0: Creative Commons Attribution
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
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