References
87
22. E. Peter, P. Senellart, D. Martrou, A. Lemaître, J. Hours, J.M. Gérard, J. Bloch, Exciton-photon
strong-coupling regime for a single quantum dot embedded in a microcavity. Phys. Rev. Lett.
95, 067401 (2005)
23. D. Englund, D. Fattal, E. Waks, G. Solomon, B. Zhang, T. Nakaoka, Y. Arakawa, Y. Yamamoto,
J. Vuˇ ckovi´ c, Controlling the spontaneous emission rate of single quantum dots in a twodimensional photonic crystal. Phys. Rev. Lett. 95, 013904 (2005)
24. S. Noda, Seeking the ultimate nanolaser. Science 314, 260 (2006)
25. N. Na, Y. Yamamoto, Massive parallel generation of indistinguishable single photons via the
polaritonic superfluid to Mott-insulator quantum phase transition. New J. Phys. 12, 123001
(2010)
26. S. Strauf, F. Jahnke, Single quantum dot nanolaser. Laser Photonics Rev. 5, 607–633 (2011)
27. X. Lin, X. Dai, C. Pu, Y. Deng, Y. Niu, L. Tong, W. Fang, Y. Jin, X. Peng, Electricallydriven single-photon sources based on colloidal quantum dots with near-optimal antibunching
at room temperature. Nat. Commun. 8, 1132 (2017). https://doi.org/10.1038/s41467-01701379-6
28. J.L. O’Brien, A. Furusawa, J. Vuˇ ckovi´ c, Photonic quantum technologies. Nat. Photonics 3,
687–695 (2009)
29. A. Boretti, L. Rosa, A. Mackie, S. Castelletto, Electrically driven quantum light sources. Adv.
Opt. Mater. 3, 1012–1033 (2015)
30. I. Aharonovich, D. Englund, M. Toth, Solid-state single-photon emitters. Nat. Photonics 10,
631–641 (2016)
31. S. Rodt, S. Reitzenstein, T. Heindel, Deterministically fabricated solid-state quantum-light
sources. J. Phys. Condens. Matter 32, 153003 (2020)
32. J.P. Reithmaier, G. Sek, A. Löffler, C. Hofmann, S. Kuhn, S. Reitzenstein, L.V. Keldysh,
V.D. Kulakovskii, T.L. Reinecke, A. Forchel, Strong coupling in a single quantum dotsemiconductor microcavity system. Nature 432, 197–200 (2004)
33. T. Yoshie, A. Scherer, J. Hendrickson, G. Khitrova, H.M. Gibbs, G. Rupper, C. Ell, O.B.
Shchekin, D.G. Deppe, Vacuum Rabi splitting with a single quantum dot in a photonic crystal
nanocavity. Nature 432, 200–203 (2004)
34. L. Dominici, D. Colas, S. Donati, J.P. Restrepo Cuartas, M. De Giorgi, D. Ballarini,
G. Guirales, J.C. López Carreño, A. Bramati, G. Gigli, E. Del Valle, F.P. Laussy, D. Sanvitto,
Ultrafast control and Rabi oscillations of polaritons. Phys. Rev. Lett. 113, 226401 (2014)
35. D. Colas, L. Dominici, S. Donati, A.A. Pervishko, T.C. Liew, I.A. Shelykh, D. Ballarini,
M. De Giorgi, A. Bramati, G. Gigli, E. Del Valle, F.P. Laussy, A.V. Kavokin, D. Sanvitto,
Polarization shaping of Poincaré beams by polariton oscillations. Light Sci. Appl. 4, e350
(2015)
36. A.D. Jameson, J.L. Tomaino, Y.-S. Lee, G. Khitrova, H.M. Gibbs, C.N. Böttge, A.C. Klettke,
M. Kira, S.W. Koch, Direct measurement of light-matter energy exchange inside a microcavity.
Optica 1, 276 (2014)
37. J. Kasprzak, M. Richard, S. Kundermann, A. Baas, P. Jeambrun, J.M.J. Keeling, F.M.
Marchetti, M.H. Szyma´ nska, R. André, J.L. Staehli, V. Savona, P.B. Littlewood, B. Deveaud,
L.S. Dang, Bose-Einstein condensation of exciton polaritons. Nature 443, 409–414 (2006)
38. H. Deng, G. Weihs, C. Santori, J. Bloch, Y. Yamamoto, Condensation of semiconductor
microcavity exciton polaritons. Science 298(5591), 199–202 (2002)
39. H. Deng, G.S. Solomon, R. Hey, K.H. Ploog, Y. Yamamoto, Spatial coherence of a polariton
condensate. Phys. Rev. Lett. 99, 126403 (2007)
40. R. Balili, V. Hartwell, D. Snoke, L. Pfeiffer, K. West, Bose-Einstein condensation of microcavity polaritons in a trap. Science 316, 1007–1010 (2007)
41. D. Snoke, Polariton condensates: a feature rather than a bug. Nat. Phys. 4, 673 (2008)
42. H. Deng, H. Haug, Y. Yamamoto, Exciton-polariton Bose-Einstein condensation. Rev. Mod.
Phys. 82, 1489 (2010)
43. V.B. Timoffeev, Bose condensation of exciton polaritons in microcavities. Fizika i Tekhnika
Poluprovodnikov 46(7), 865–883 (2012). (Engl. translation in Semiconductors 46(7), S. 843)
(Springer, 2012)
Précédent

- 115/288

Suivant