arXiv · 2003.12304
Photoluminescence dynamics in few-layer InSe
Abstract
We study the optical properties of thin flakes of InSe encapsulated in hBN. More specifically, we investigate the photoluminescence (PL) emission and its dependence on sample thickness and temperature. Through the analysis of the PL lineshape, we discuss the relative weights of the exciton and electron-hole contributions. Thereafter we investigate the PL dynamics. Two contributions are distinguishable at low temperature: direct bandgap electron-hole and defect-assisted recombination. The two recombination processes have lifetime of $\tau_1 \sim 8\;$ns and $\tau_2 \sim 100\;$ns, respectively. The relative weights of the direct bandgap and defect-assisted contributions show a strong layer dependence due to the direct-to-indirect bandgap crossover. Electron-hole PL lifetime is limited by population transfer to lower-energy states and no dependence on the number of layers was observed. The lifetime of the defect-assisted recombination gets longer for thinner samples. Finally, we show that the PL lifetime decreases at high temperatures as a consequence of more efficient non-radiative recombinations.
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Tommaso Venanzi, Himani Arora, Stephan Winnerl, Alexej Pashkin, Phanish Chava, Amalia Patanè, Zakhar D. Kovalyuk, Zalhar R. Kudrynskyi, Kenji Watanabe, Takashi Taniguchi, Artur Erbe, Manfred Helm, Harald Schneider. 2020-03-27. Photoluminescence dynamics in few-layer InSe. https://arxiv.org/abs/2003.12304
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