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Extremely Efficient Multiple Electron-Hole Pair Generation in Carbon Nanotube Photodiodes
523
Citations
20
References
2009
Year
Electrical EngineeringP-n Junction PhotodiodesEngineeringPhotoluminescenceCarbon-based MaterialNanoelectronicsApplied PhysicsCarbon Nanotube PhotodiodesPhotoelectric MeasurementPhoto-electrochemical CellOptoelectronicsPhotovoltaicsCompound SemiconductorElectron-hole PairsOptical Excitation
We observed highly efficient generation of electron-hole pairs due to impact excitation in single-walled carbon nanotube p-n junction photodiodes. Optical excitation into the second electronic subband E22 leads to striking photocurrent steps in the device I-V(SD) characteristics that occur at voltage intervals of the band-gap energy E(GAP)/e. Spatially and spectrally resolved photocurrent combined with temperature-dependent studies suggest that these steps result from efficient generation of multiple electron-hole pairs from a single hot E22 carrier. This process is both of fundamental interest and relevant for applications in future ultra-efficient photovoltaic devices.
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