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  5. Mapping Local Charge Recombination Heterogeneity by Multidimensional Nanospectroscopic Imaging

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Article
en
2012

Mapping Local Charge Recombination Heterogeneity by Multidimensional Nanospectroscopic Imaging

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en
2012
Vol 338 (6112)
Vol. 338
DOI: 10.1126/science.1227977

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Eli Yablonovitch
Eli Yablonovitch

University of California, Berkeley

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Wei Bao
Mauro Melli
Niccolò Caselli
+13 more

Abstract

Mind the Gap Near-field microscopy has benefited from subwavelength near-field plasmonic probes that make use of the field-concentrating properties of gaps. These probes achieve maximum enhancement only in the tip-substrate gap mode, which can yield large near-field signals, but only for a metallic substrate and for very small tip-substrate gap distances. Bao et al. (p. 1317 ) designed a probe that unites broadband field enhancement and confinement with bidirectional coupling between far-field and near-field electromagnetic energy. Their tips primarily rely on the internal gap modes of the tip itself, thereby enabling it to image nonmetallic samples.

How to cite this publication

Wei Bao, Mauro Melli, Niccolò Caselli, Francesco Riboli, Diederik S. Wiersma, Matteo Staffaroni, Hyuck Choo, D. Frank Ogletree, Shaul Aloni, Jeffrey Bokor, Stefano Cabrini, Francesca Intonti, Miquel Salmerón, Eli Yablonovitch, P. James Schuck, Alexander Weber‐Bargioni (2012). Mapping Local Charge Recombination Heterogeneity by Multidimensional Nanospectroscopic Imaging. , 338(6112), DOI: https://doi.org/10.1126/science.1227977.

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Publication Details

Type

Article

Year

2012

Authors

16

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1126/science.1227977

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