Thermo-optical interactions in a dye-microcavity photon Bose–Einstein condensate
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[1] Frank Vewinger,et al. Variable potentials for thermalized light and coupled condensates , 2017, Nature Photonics.
[2] I. Carusotto,et al. Role of geometry in the superfluid flow of nonlocal photon fluids , 2015, 1511.06634.
[3] R. Nyman,et al. Experimental evidence for inhomogeneous pumping and energy-dependent effects in photon Bose-Einstein condensation , 2014, 1410.6822.
[4] T. Damm,et al. Thermalization kinetics of light: From laser dynamics to equilibrium condensation of photons , 2014, 1410.5713.
[5] I. Carusotto,et al. Experimental characterization of nonlocal photon fluids , 2014 .
[6] Marcello Calvanese Strinati,et al. Bose-Einstein condensation of photons with nonlocal nonlinearity in a dye-doped graded-index microcavity , 2014, 1406.6250.
[7] Jonathan Keeling,et al. Nonequilibrium model of photon condensation. , 2013, Physical review letters.
[8] J. Rogel-Salazar. The Gross–Pitaevskii equation and Bose–Einstein condensates , 2013, 1301.2073.
[9] M. Brachet. Gross–Pitaevskii description of superfluid dynamics at finite temperature: A short review of recent results , 2012 .
[10] S. Girvin,et al. Dynamics of Phase Coherence Onset in Bose Condensates of Photons by Incoherent Phonon Emission , 2012, 1209.5369.
[11] C. Ciuti. Quantum fluids of light , 2012, 2014 Conference on Lasers and Electro-Optics (CLEO) - Laser Science to Photonic Applications.
[12] G. Nardin,et al. Soliton instabilities and vortex street formation in a polariton quantum fluid. , 2011, Physical review letters.
[13] J. Schmitt,et al. Bose–Einstein condensation of paraxial light , 2011, 1109.4023.
[14] Benoit Deveaud-Plédran,et al. Hydrodynamic nucleation of quantized vortex pairs in a polariton quantum fluid , 2011 .
[15] V. G. Sala,et al. All-optical control of the quantum flow of a polariton condensate , 2011, 1103.4885.
[16] V. G. Sala,et al. Polariton Superfluids Reveal Quantum Hydrodynamic Solitons , 2011, Science.
[17] M. Weitz,et al. Bose–Einstein condensation of photons in an optical microcavity , 2010, Nature.
[18] M. Weitz,et al. Thermalization of a two-dimensional photonic gas in a `white wall' photon box , 2010, 1004.2956.
[19] I. Carusotto,et al. Superfluidity of polaritons in semiconductor microcavities , 2008, 0812.2748.
[20] I. Carusotto,et al. Excitations in a nonequilibrium Bose-Einstein condensate of exciton polaritons. , 2007, Physical review letters.
[21] I. Carusotto,et al. Probing microcavity polariton superfluidity through resonant Rayleigh scattering. , 2004, Physical review letters.
[22] W. Ketterle. Nobel lecture: When atoms behave as waves: Bose-Einstein condensation and the atom laser* , 2002 .
[23] R. Chiao. Bogoliubov dispersion relation for a `photon fluid': Is this a superfluid? 1 It is a great pleasure , 1999, quant-ph/9908060.
[24] V. P. N. Nampoori,et al. Solvent Effect on Absolute Fluorescence Quantum Yield of Rhodamine 6G Determined Using Transient Thermal Lens Technique , 1999 .
[25] Staliunas. Laser Ginzburg-Landau equation and laser hydrodynamics. , 1993, Physical review. A, Atomic, molecular, and optical physics.
[26] Brambilla,et al. Transverse laser patterns. II. Variational principle for pattern selection, spatial multistability, and laser hydrodynamics. , 1991, Physical review. A, Atomic, molecular, and optical physics.
[27] M. Dunn,et al. Refractive indices and thermo-optical properties of dye laser solvents , 1987 .
[28] J. P. Gordon,et al. Long‐Transient Effects in Lasers with Inserted Liquid Samples , 1965 .