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Publication List

Here are my publications listed the classic way. There’s a more accessible listing if you are interested.

  1. Lindner, S. (2018). Towards integrated single-photon sources exploiting inhomogeneous spectral properties of the silicon-vacancy center in nanodiamonds [Phdthesis, Saarländische Universitäts-und Landesbibliothek]. https://doi.org/http://dx.doi.org/10.22028/D291-27541
  2. Lindner, S., Bommer, A., Muzha, A., Krueger, A., Gines, L., Mandal, S., Williams, O., Londero, E., Gali, A., & Becher, C. (2018). Strongly inhomogeneous distribution of spectral properties of silicon-vacancy color centers in nanodiamonds. New Journal of Physics, 20(11), 115002.
  3. Ikonen, E., Vaigu, A., Porrovecchio, G., Chu, X.-L., Lindner, S., Smid, M., Manninen, A., Becher, C., Sandoghdar, V., & Götzinger, S. (2017). Predictable single photon source with variable photon flux.
  4. Vaigu, A., Porrovecchio, G., Chu, X.-L., Lindner, S., Smid, M., Manninen, A., Becher, C., Sandoghdar, V., Götzinger, S., & Ikonen, E. (2017). Experimental demonstration of a predictable single photon source with variable photon flux. Metrologia, 54(2), 218.
  5. Kück, S., López, M., Rodiek, B., Hofer, H., Porrovecchio, G., Šmid, M., Brida, G., Traina, P., Degiovanni, I. P., Pokatilov, A., Kübarsepp, T., Manninen, A., Vaigu, A., Chunnilall, C., Szwer, D., Polyakov, S., Claudon, J., Gregersen, N., Mørk, J., … Reitzenstein, S. (2017). Single-photon sources for quantum technologies - Results of the joint research project SIQUTE. Proceedings of 13th International Conference on New Developments and Applications in Optical Radiometry.
  6. Rodiek, B., Lopez, M., Hofer, H., Porrovecchio, G., Smid, M., Chu, X.-L., Gotzinger, S., Sandoghdar, V., Lindner, S., Becher, C., & others. (2017). Experimental realization of an absolute single-photon source based on a single nitrogen vacancy center in a nanodiamond. Optica, 4(1), 71–76.
  7. Lindner, S., Bommer, A., Muzha, A., Krueger, A., Gines, L., Mandal, S., Williams, O., & Becher, C. (2015). Narrowband, room-temperature single photon emitters based on silicon-vacancy centers in diamond nanocrystals produced by a wet-milling process. In Single Photon Workshop.

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