Leonardo Midolo

Leonardo Midolo

Associate Professor


  1. Electromechanical wavelength tuning of double-membrane photonic crystal cavities

    Midolo, Leonardo, van Veldhoven, P. J., Dundar, M. A., Notzel, R. & Fiore, A., 23 May 2011, In: Applied Physics Letters. 98, 21, 211120.

    Research output: Contribution to journalJournal articleResearchpeer-review

  2. Spontaneous emission control of single quantum dots by electromechanical tuning of a photonic crystal cavity

    Midolo, Leonardo, Pagliano, F., Hoang, T. B., Xia, T., van Otten, F. W. M., Li, L. H., Linfield, E. H., Lermer, M., Hoefling, S. & Fiore, A., 27 Aug 2012, In: Applied Physics Letters. 101, 9, 091106.

    Research output: Contribution to journalJournal articleResearchpeer-review

  3. Published

    Narrow optical linewidths and spin pumping on charge-tunable close-to-surface self-assembled quantum dots in an ultrathin diode

    Loebl, M. C., Soellner, I., Javadi, A., Pregnolato, T., Schott, R., Midolo, Leonardo, Kuhlmann, A. V., Stobbe, S., Wieck, A. D., Lodahl, Peter, Ludwig, A. & Warburton, R. J., 30 Oct 2017, In: Physical Review B. 96, 16, 165440.

    Research output: Contribution to journalJournal articleResearchpeer-review

  4. Published

    Radiative Auger process in the single-photon limit

    Lobl, M. C., Spinnler, C., Javadi, A., Zhai, L., Nguyen, G. N., Ritzmann, J., Midolo, Leonardo, Lodahl, Peter, Wieck, A. D., Ludwig, A. & Warburton, R. J., Jul 2020, In: Nature Nanotechnology. 15, 7, p. 558-562 6 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  5. Published

    Indistinguishable and efficient single photons from a quantum dot in a planar nanobeam waveguide

    Kirsanské, G., Nielsen, H. T., Daveau, R. S., Dreessen, C. L., Pregnolato, T., Midolo, Leonardo, Tighineanu, P., Javadi, A., Stobbe, S., Ludwig, A., Schott, R., Wieck, A. D., Park, S. I., Song, J. D., Kuhlmann, A., Söllner, I., Löbel, M., Warburton, R. J. & Lodahl, Peter, 19 Oct 2017, In: Physical Review B. 96, 165306.

    Research output: Contribution to journalJournal articleResearchpeer-review

  6. Ultrafast non-local control of spontaneous emission

    Jin, C., Johne, R., Swinkels, M. Y., Hoang, T. B., Midolo, Leonardo, van Veldhoven, P. J. & Fiore, A., 14 Nov 2014, In: Nature Nanotechnology. 9, 11, p. 886-890

    Research output: Contribution to journalJournal articleResearchpeer-review

  7. Published

    Dynamical photon-photon interaction mediated by a quantum emitter

    Jeannic, H. L., Tiranov, A., Carolan, J., Ramos, T., Wang, Ying, Appel, Martin Hayhurst, Scholz, S., Wieck, A. D., Ludwig, A., Rotenberg, N., Midolo, Leonardo, García-Ripoll, J. J., Sørensen, Anders Søndberg & Lodahl, Peter, 10 Sep 2022, In: Nature Physics. 18, p. 1191-1195 7 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  8. Published

    Single-photon non-linear optics with a quantum dot in a waveguide

    Javadi, A., Sollner, I. N., Arcari, M., Hansen, S. L., Midolo, Leonardo, Mahmoodian, S., Kirsanské, G., Pregnolato, T., Lee, E. H., Song, J. D., Stobbe, S. & Lodahl, Peter, 23 Oct 2015, In: Nature Communications. 6, 8655.

    Research output: Contribution to journalJournal articleResearchpeer-review

  9. Published

    Spin-photon interface and spin-controlled photon switching in a nanobeam waveguide

    Javadi, A., Ding, D., Appel, Martin Hayhurst, Mahmoodian, S., Löbl, M. C., Söllner, I., Schott, R., Papon, C., Pregnolato, T., Stobbe, S., Midolo, Leonardo, Schröder, T., Wieck, A. D., Ludwig, A., Warburton, R. J. & Lodahl, Peter, 19 Mar 2018, In: Nature Nanotechnology. 13, 5, p. 398-403 6 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  10. Enhanced spontaneous emission from quantum dots in short photonic crystal waveguides

    Hoang, T. B., Beetz, J., Midolo, Leonardo, Skacel, M., Lermer, M., Kamp, M., Hoefling, S., Balet, L., Chauvin, N. & Fiore, A., 6 Feb 2012, In: Applied Physics Letters. 100, 6, 061122.

    Research output: Contribution to journalJournal articleResearchpeer-review

ID: 47983185