Abstract
The authors report on time-resolved near-field spectroscopy of ZnOZnMgO nanorod double-quantum-well structures (DQWs) for a nanometer-scale photonic device. They observed nutation of the population between the resonantly coupled exciton states of DQWs. Furthermore, they demonstrated switching dynamics by controlling the exciton excitation in the dipole-inactive state via an optical near field. The results of time-resolved near-field spectroscopy of isolated DQWs described here are a promising step toward designing a nanometer-scale photonic switch and related devices. © 2007 American Institute of Physics.
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CITATION STYLE
Yatsui, T., Sangu, S., Kawazoe, T., Ohtsu, M., An, S. J., Yoo, J., & Yi, G. C. (2007). Nanophotonic switch using ZnO nanorod double-quantum-well structures. Applied Physics Letters, 90(22). https://doi.org/10.1063/1.2743949
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