Bibliographic Details
| Title: |
Mapping Local Charge Recombination Heterogeneity by Multidimensional Nanospectroscopic Imaging. |
| Authors: |
Wei Bao, Melli, M., Caselli, N., Riboli, F., Wiersma, D. S., Staffaroni, M., Choo, H., Ogletree, D. F., Aloni, S., Bokor, J., Cabrini, S., Intonti, F., Salmeron, M. B., Yablonovitch, E., Schuck, P. J., Weber-Bargioni, A. |
| Source: |
Science (pre-March 2025). 12/7/2012, Vol. 338 Issue 6112, p1317-1321. 5p. |
| Subjects: |
Optoelectronics, Materials science, Optical spectroscopy, Electronic excitation, Hyperspectral imaging systems, Electric properties of indium phosphide, Optical properties of indium phosphide, Nanowires spectra |
| Abstract: |
The article discusses research using multidimensional nanospectroscopic imaging to map local charge recombination heterogeneity in nanowires. The authors note that the importance of optically probing matter with true nanoscale spatial resolution increases as materials' functionality becomes more dependent on local physical and electronic properties. Topics include the authors' methodology for mapping the influence of local trap states within individual nanowires on carrier recombination using multidimensional nanospectroscopic imaging, hyperspectral imaging of indium phosphide nanowires via excitation and collection through the probes, and what the results revealed about the optoelectronic structure along individual nanowires. |
| Database: |
Psychology and Behavioral Sciences Collection |