Defect levels and interface space charge area responsible for negative photovoltage component in InAs/GaAs quantum dot photodetector structure
InAs/GaAs quantum dot photodetector photoresponse spectra consist of quantum dot, wetting layer and GaAs components, however, they frequently contain features attributed to defect levels. In this study we focus on the origin of an unwanted negative photovoltage component in order to find a design al...
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Published in | Microelectronic engineering Vol. 230; p. 111367 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier B.V
01.06.2020
Elsevier BV |
Subjects | |
Online Access | Get full text |
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Summary: | InAs/GaAs quantum dot photodetector photoresponse spectra consist of quantum dot, wetting layer and GaAs components, however, they frequently contain features attributed to defect levels. In this study we focus on the origin of an unwanted negative photovoltage component in order to find a design allowing to eliminate these undesirable effects. Photoelectric properties of vertical InAs/GaAs quantum dot structures grown on semi-insulating (si) and n+-GaAs wafers are analyzed. It is found that the photoresponse drop above 1.37 eV in the photovoltage spectrum, observed with si-GaAs substrate, is originated from shallow defect levels in the unintentional space-charge area created at the interface between the substrate and n+-GaAs buffer. The intrinsic field in that area is opposite to the top pn junction, according to modelling calculations, and it reduces the photoelectric response. Photoelectric characterization of the heterostructure grown on n+-GaAs indicates that the utilization of n+-GaAs substrate helps to avoid this band bending and to eliminate its negative effects, increasing the total photoresponse.
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•PV consists of quantum dot, wetting layer, GaAs components and features attributed to defect levels.•The negative PV component is found at 1.37 eV in InAs/GaAs quantum dot heterostructure on si-GaAs wafer.•The negative PV is originated from the shallow defect levels of si-GaAs substrate in the unintentional space-charge area.•The band bending of the unintentional space-charge area is opposite to the top pn junction and it reduces PV.•Utilization of n+-GaAs wafer eliminates si-GaAs-related negative PV, increasing the total PV. |
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ISSN: | 0167-9317 1873-5568 |
DOI: | 10.1016/j.mee.2020.111367 |