# ''Climbing the Jaynes-Cummings ladder by photon counting'', F. P. Laussy, E. del Valle, M. Schrapp, A. Laucht and J. J. Finley [http://arxiv.org/abs/1104.3564 arXiv:1104.3564] to appear in the Journal of Nanophotonics.
# ''Climbing the Jaynes-Cummings ladder by photon counting'', F. P. Laussy, E. del Valle, M. Schrapp, A. Laucht and J. J. Finley [http://arxiv.org/abs/1104.3564 arXiv:1104.3564] to appear in the Journal of Nanophotonics.
# ''Theory of frequency-filtered and time-resolved $N$-photon correlations''
# ''Theory of frequency-filtered and time-resolved $N$-photon correlations'', Elena del Valle, Alejandro Gonzalez-Tudela, Fabrice P. Laussy, Carlos Tejedor, Michael J. Hartmann [http://arxiv.org/abs/1203.6016 arXiv:1203.6016] to appear in Phys.~Rev.~Lett.
Elena del Valle, Alejandro Gonzalez-Tudela, Fabrice P. Laussy, Carlos Tejedor, Michael J. Hartmann [http://arxiv.org/abs/1203.6016 arXiv:1203.6016] to appear in Phys.~Rev.~Lett.
On the period between 1June (2010) and 31May (2012), I have been leading the project Solid-state Quantum Optical Devices (SQOD) in the group of Prof. Jonathan Finley (head of the Nanostructure Photonics Group and scientist in charge) in the context of a European Union grant, a so-called Intra-European Fellowships (IEF) for Career Development, in the FP7--PEOPLE-2009-IEF call.
Climbing the Jaynes-Cummings ladder by photon counting, F. P. Laussy, E. del Valle, M. Schrapp, A. Laucht and J. J. Finley arXiv:1104.3564 to appear in the Journal of Nanophotonics.
Theory of frequency-filtered and time-resolved $N$-photon correlations, Elena del Valle, Alejandro Gonzalez-Tudela, Fabrice P. Laussy, Carlos Tejedor, Michael J. Hartmann arXiv:1203.6016 to appear in Phys.~Rev.~Lett.
Under review
Fluctuation induced luminescence sidebands in the emission spectra of resonantly driven quantum dots, F. P. Laussy, V. Jovanov, E. del Valle, A. Bechtold, S. Kapfinger, K. Müller, S. Koch, A. Laucht, T. Eissfeller, M. Bichler, G. Abstreiter, J. J. Finley arXiv:1207.6952
In preparation
A $n$-photon gun based on a quantum-dot in a microcavity.