Abstract
Ultrafast infrared photoluminescence spectroscopy was applied to a three-dimensional topological insulator TlBiSe 2 under ambient conditions. The dynamics of the luminescence exhibited bulk-insulating and gapless characteristics bounded by the bulk band gap energy. The existence of the topologically protected surface state and the picosecond-order relaxation time of the surface carriers, which was distinguishable from the bulk response, were observed. Our results provide a practical method applicable to topological insulators under ambient conditions for device applications.
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CITATION STYLE
Maezawa, S. Y., Watanabe, H., Takeda, M., Kuroda, K., Someya, T., Matsuda, I., & Suemoto, T. (2015). Optically detecting the edge-state of a three-dimensional topological insulator under ambient conditions by ultrafast infrared photoluminescence spectroscopy. Scientific Reports, 5. https://doi.org/10.1038/srep16443
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