2005/11/18 by Jia Chen, Vasili Perebeinos, Marcus Freitag +4 · 3 citations
Materials Science · Physics and Astronomy · Chemistry · #Carbon Nanotubes in Composites #Mechanical and Optical Resonators #Fullerene Chemistry and Applications
paper · doi:10.1126/science.1119177
openalex publication_date 2005/11/18 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/31
We used the high local electric fields at the junction between the suspended and supported parts of a single carbon nanotube molecule to produce unusually bright infrared emission under unipolar operation. Carriers were accelerated by band-bending at the suspension interface, and they created excitons that radiatively recombined. This excitation mechanism is approximately 1000 times more efficient than recombination of independently injected electrons and holes, and it results from weak electron-phonon scattering and strong electron-hole binding caused by one-dimensional confinement. The ensuing high excitation density allows us to observe emission from higher excited states not seen by photoexcitation. The excitation mechanism of these states was analyzed.