Using Quantum Dot Structure and Suitable Material for Increasing Propagation Length of Surface Plasmon Polariton
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-52239-0_13
Reference38 articles.
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2. Gramotnev, D.K., Bozhevolnyi, S.I.: Plasmonics beyond the diffraction limit. Nat. Photonics 4(2), 83–91 (2010)
3. Krenn, J.R., et al.: Non-diffraction-limited light transport by gold nanowires. Europhys. Lett. 60(5), 663–669 (2002). https://doi.org/10.1209/epl/i2002-00360-9
4. Tamaki, R., Shoji, Y., Lombez, L., Guillemoles, J.-F., Okada, Y.: Quasi-Fermi level splitting in InAs quantum-dot solar cells from photoluminescence measurements. In: Physics, Simulation, and Photonic Engineering of Photovoltaic Devices IX, vol. 1294, no. 2, p. 32 (2020). https://doi.org/10.1117/12.2545657
5. Castro-Lopez, M., Manjavacas, A., García de Abajo, J., van Hulst, N. F.: Propagation and localization of quantum dot emission along a gap-plasmonic transmission line. Opt. Express 23(23), 29296 (2015). https://doi.org/10.1364/oe.23.029296
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