2009
DOI: 10.3103/s1068337209040045
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Evaluation of local photoconductivity of solar cells by microwave near-field microscopy technique

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“…Charge collection pathways, space charge regions and mixed amorphous or crystalline domains could be imaged unprecedented optical resolution using photocurrent NSOM studies. Photoconductivity studies at the near-fields have not been limited to the optical wavelengths and there have been studies in microwave based NSOM to study non-uniformities in silicon solar cells and graphene [39][40][41]. A high resolution photocurrent microscopy technique based on the cathodoluminescence of quantum dots has been demonstrated [42].…”
Section: Introductionmentioning
confidence: 99%
“…Charge collection pathways, space charge regions and mixed amorphous or crystalline domains could be imaged unprecedented optical resolution using photocurrent NSOM studies. Photoconductivity studies at the near-fields have not been limited to the optical wavelengths and there have been studies in microwave based NSOM to study non-uniformities in silicon solar cells and graphene [39][40][41]. A high resolution photocurrent microscopy technique based on the cathodoluminescence of quantum dots has been demonstrated [42].…”
Section: Introductionmentioning
confidence: 99%