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Results: 9
Number of items: 9
  • Open Access
    Marino, E., Sciortino, A., Berkhout, A., MacArthur, K. E., Heggen, M., Gregorkiewicz, T., Kodger, T. E., Capretti, A., Murray, C. B., Koenderink, A. F., Messina, F., & Schall, P. (2020). Simultaneous photonic and excitonic coupling in spherical quantum dot supercrystals. ACS Nano, 14(10), 13806-13815. https://doi.org/10.1021/acsnano.0c06188
  • Open Access
    de Boer, W. D. A. M., Hirtz, J. J., Capretti, A., Gregorkiewicz, T., Izquierdo-Serra, M., Han, S., Dupre, C., Shymkiv, Y., & Yuste, R. (2018). Neuronal photoactivation through second-harmonic near-infrared absorption by gold nanoparticles. Light: Science and Applications, 7, Article 100. https://doi.org/10.1038/s41377-018-0103-0
  • Open Access
    de Jong, E. M. L. D., Rutjes, H., Valenta, J., Trinh, M. T., Poddubny, A. N., Yassievich, I. N., Capretti, A., & Gregorkiewicz, T. (2018). Thermally stimulated exciton emission in Si nanocrystals. Light: Science & Applications, 7, Article 17133. https://doi.org/10.1038/lsa.2017.133
  • Open Access
    de Weerd, C., Gomez, L., Capretti, A., Lebrun, D. M., Matsubara, E., Lin, J., Ashida, M., Spoor, F. C. M., Siebbeles, L. D. A., Houtepen, A. J., Suenaga, K., Fujiwara, Y., & Gregorkiewicz, T. (2018). Efficient carrier multiplication in CsPbI3 perovskite nanocrystals. Nature Communications, 9, Article 4199. https://doi.org/10.1038/s41467-018-06721-0
  • de Boer, W., Timmerman, D., Yassievich, I., Capretti, A., & Gregorkiewicz, T. (2017). Reply to 'Absence of redshift in the direct bandgap of silicon nanocrystals with reduced size'. Nature Nanotechnology, 12(10), 932-933. https://doi.org/10.1038/nnano.2017.202
  • Open Access
    Capretti, A., Lesage, A., & Gregorkiewicz, T. (2017). Integrating quantum dots and dielectric mie resonators: A hierarchical metamaterial inheriting the best of both. ACS Photonics, 4(9), 2187-2196. https://doi.org/10.1021/acsphotonics.7b00320
  • Capretti, A., Wang, Y., & Negro, L. D. (2016). Engineering nonlinear sources with silicon-compatible optical materials. In L. Khriachtchev (Ed.), Silicon Nanophotonics: Basic Principles, Present Status, and Perspectives (2 ed., pp. 221-240). Pan Stanford Publishing. https://doi.org/10.4032/9789814669771
  • Malafronte, A., Capretti, A., Pepe, G. P., Forestiere, C., Miano, G., Auriemma, F., De Rosa, C., & Di Girolamo, R. (2016). Simple Theoretical Considerations for Block-Copolymer-Based Plasmonic Metamaterials. Macromolecular symposia, 359(1), 72-78. https://doi.org/10.1002/masy.201400178
  • Open Access
    Inaba, T., Lee, D.-G., Wakamatsu, R., Kojima, T., Mitchell, B., Capretti, A., Gregorkiewicz, T., Koizumi, A., & Fujiwara, Y. (2016). Substantial enhancement of red emission intensity by embedding Eu-doped GaN into a microcavity. AIP advances, 6(4), Article 045105. https://doi.org/10.1063/1.4946849
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