Диссертация (1149960), страница 14
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— DOI:http://dx.doi.org/10.1063/1.4948664.9. Room-temperature cavity polaritons in a semiconductor microcavity / R.Houdre, R. P. Stanley, U. Oesterle, M. Ilegems, [et al.] // Phys. Rev. B. —1994. — Vol. 49. — P. 16761.10. Spin Physics in Semiconductors / ed. by M. I. Dyakonov. — Springer-Verlag,2008. — (Springer series in solid-state sciences).7311.
Kikkawa J. M., Awschalom D. D. Resonant Spin Amplification in n-TypeGaAs // Phys. Rev. Lett. — 1998. — Vol. 80, issue 19. — Pp. 4313–4316.12. Pump-probe Faraday rotation and ellipticity in an ensemble of singlycharged quantum dots / I. A. Yugova, M. M. Glazov, E. L. Ivchenko,A. L. Efros // Phys. Rev. B. — 2009. — Sept. — Vol. 80, issue 10. —P. 104436. — DOI: 10.1103/PhysRevB.80.104436.13. Troitski Y.
V. Synthesis of mirrors with anomalous dispersion of the reflection phase // Optical Engineering. — 1995. — Vol. 34, no. 5. — Pp. 1503–1507. — DOI: 10.1117/12.199868.14. Enhanced Faraday rotation in CdMnTe quantum wells embedded in an optical cavity / C. Gourdon, G. Lazard, V. Jeudy, C. Testelin, [et al.] // SolidState Communications. — 2002. — Vol.
123, no. 6–7. — Pp. 299–304.15. Using active resonator impedance matching for shot-noise limited, cavityenhanced amplitude modulated laser absorption spectroscopy / H. ChowJong, C. Littler Ian, S. Rabeling David, E. McClelland David, [et al.] //Opt. Express. — 2008. — Vol. 16, no. 11. — Pp. 7726–7738.16. Experimental demonstration of impedance match locking and control forcoupled resonators / S. Rabeling David, H.
Chow Jong, B. Gray Malcolm,E. McClelland David // Opt. Express. — 2010. — Vol. 18, no. 9. —Pp. 9314–9323.17. Pezeshki B., Williams G. A., Harris J. S. Optical phase modulator utilizingelectroabsorption in a Fabry-Perot cavity // Applied Physics Letters. —1992. — Vol. 60, no. 9. — Pp. 1061–1063.18.
Salis G., Moser M. Faraday-rotation spectrum of electron spins inmicrocavity-embedded GaAs quantum wells // Phys. Rev. B. — 2005. —Vol. 72. — P. 115325.19. Parametric Scattering of Cavity Polaritons / M. Kuwata-Gonokami, S. Inouye, H. Suzuura, M. Shirane, [et al.] // Phys. Rev. Lett. — 1997. —Vol. 79, issue 7. — Pp. 1341–1344.7420. Stimulated spin dynamics of polaritons in semiconductor microcavities /P. G.
Lagoudakis, P. G. Savvidis, J. J. Baumberg, D. M. Whittaker, [etal.] // Phys. Rev. B. — 2002. — Vol. 65, issue 16. — P. 161310.21. Experimental determination of intrinsic nonlinearities in semiconductor microcavities / A. Huynh, J. Tignon, P. Roussignol, C. Delalande, [et al.] //Phys. Rev. B. — 2002. — Vol. 66, issue 11.
— P. 113301.22. Microcavity polariton spin quantum beats without a magnetic field: A manifestation of Coulomb exchange in dense and polarized polariton systems /P. Renucci, T. Amand, X. Marie, P. Senellart, [et al.] // Phys. Rev. B. —2005. — Vol. 72, issue 7.
— P. 075317.23. Direct Measurement of Exciton-Exciton Interaction Energy / Z. Vörös,D. W. Snoke, L. Pfeiffer, K. West // Phys. Rev. Lett. — 2009. — Vol. 103,issue 1. — P. 016403.24. Polariton-polariton interaction constants in microcavities / M. Vladimirova,S. Cronenberger, D. Scalbert, K. V. Kavokin, [et al.] // Phys.
Rev. B. —2010. — Vol. 82. — P. 075301.25. Heterodyne spectroscopy of polariton spinor interactions / N. Takemura, S.Trebaol, M. Wouters, M. T. Portella-Oberli, [et al.] // Phys. Rev. B. —2014. — Vol. 90, issue 19. — P. 195307.26. Spin Rings in Bistable Planar Semiconductor Microcavities / C.
Adrados,A. Amo, T. C. H. Liew, R. Hivet, [et al.] // Phys. Rev. Lett. — 2010. —Vol. 105, issue 21. — P. 216403.27. Polariton-polariton scattering in microcavities: A microscopic theory /M. M. Glazov, H. Ouerdane, L. Pilozzi, G. Malpuech, [et al.] // Phys. Rev.B. — 2009. — Vol. 80, issue 15. — P. 155306.28. Photoinduced magneto-optic Kerr effects in asymmetric semiconductor microcavities / D. P. Cubian, M.
Haddad, R. André, R. Frey, [et al.] // Phys.Rev. B. — 2003. — Vol. 67. — P. 045308.29. Coherent spin dynamics of exciton-polaritons in diluted magnetic microcavities / A. Brunetti, M. Vladimirova, D. Scalbert, R. André, [et al.] // Phys.Rev. B. — 2006. — Vol. 73, issue 20. — P. 205337.7542. Nonlinear optical spectroscopy of indirect excitons in coupled quantumwells / P. Andreakou, S. Cronenberger, D. Scalbert, A. Nalitov, [et al.] //Phys. Rev. B. — 2015. — Vol. 91, no.
12. — P. 125437.40. Direct and indirect excitons in semiconductor coupled quantum wells in anapplied electric field / K. Sivalertporn, L. Mouchliadis, A. L. Ivanov, R.Philp, [et al.] // Phys. Rev. B. — 2012. — Vol. 85, issue 4.
— P. 045207.41. Maialle M. Z., Andrada e Silva E. A. de, Sham L. J. Exciton spin dynamicsin quantum wells // Phys. Rev. B. — 1993. — Vol. 47, issue 23. —Pp. 15776–15788.51. Spin Currents in a Coherent Exciton Gas / A. A. High, A. T. Hammack,J. R. Leonard, S. Yang, [et al.] // Phys. Rev. Lett. — 2013.
— Vol. 110,issue 24. — P. 246403.30. Elliott R. J., Loudon R. Theory of the absorption edge in semiconductorsin a high magnetic field // Journal of Physics and Chemistry of Solids. —1960. — Vol. 15, no. 3–4. — Pp. 196–207.31. Hasegawa H., Howard R. E. Optical absorption spectrum of hydrogenicatoms in a strong magnetic field // Journal of Physics and Chemistry ofSolids. — 1961. — Vol. 21, no. 3–4. — Pp. 179–198.32. Gor’kov L. P., Dzyaloshinskii I. E. Contribution to the theory of the mottexciton in a strong magnetic field // J. Exp. Theor.
Phys. — 1968. —Vol. 26, no. 2. — P. 449.33. Lerner I. V., Lozovik Y. E. Two-dimensional electron-hole system in astrong magnetic field as an almost ideal exciton gas // Soviet PhysicsJETP. — 1981. — Vol. 53, no. 4. — P. 763.34. From spatially indirect excitons to momentum-space indirect excitons byan in-plane magnetic field / L. V. Butov, A. V. Mintsev, Y.
E. Lozovik,K. L. Campman, [et al.] // Phys. Rev. B. — 2000. — Vol. 62, no. 3. —Pp. 1548–1551.35. Gorbatsevich A. A., Tokatly I. V. Formation of space indirect magnetoexcitons in double-quantum-well direct-gap heterostructures // SemiconductorScience and Technology. — 1998. — Vol. 13, no. 3. — P. 288.7636. Quasi-two-dimensional excitons in finite magnetic fields / Y. E.
Lozovik,I. V. Ovchinnikov, S. Y. Volkov, L. V. Butov, [et al.] // Phys. Rev. B. —2002. — Vol. 65. — P. 235304.37. Thomas D. G., Hopfield J. J. A Magneto-Stark Effect and Exciton Motionin CdS // Phys. Rev. — 1961. — Vol. 124, issue 3. — Pp. 657–665.38. Magneto-Stark Effect of Excitons as the Origin of Second Harmonic Generation in ZnO / M. Lafrentz, D. Brunne, B. Kaminski, V. V. Pavlov, [et al.] //Phys. Rev. Lett. — 2013. — Vol. 110, no. 11. — P. 116402.39. Effect of electric fields on excitons in a coupled double-quantum-well structure / Y.
J. Chen, E. S. Koteles, B. S. Elman, C. A. Armiento // Phys.Rev. B. — 1987. — Vol. 36, no. 8. — Pp. 4562–4565.43. Балакший В. И., Парыгин В. Н., Чирков Л. Е. Физические основы акустооптики. — Радио и связь, 1985.44. Борн М., Вольф Э. Основы оптики. — М.: Наука, 1973.45. Negatively charged polaritons in a semiconductor microcavity / R. Rapaport, E. Cohen, A. Ron, E. Linder, [et al.] // Phys. Rev.
B. — 2001. —Vol. 63. — P. 235310.46. Electron-Polariton Scattering in Semiconductor Microcavities / P. G.Lagoudakis, M. D. Martin, J. J. Baumberg, A. Qarry, [et al.] // Phys.Rev. Lett. — 2003. — Vol. 90. — P. 206401.47. Giant optical Faraday rotation induced by a single-electron spin in a quantum dot: Applications to entangling remote spins via a single photon / C. Y.Hu, A. Young, J. L. O’Brien, W. J.
Munro, [et al.] // Phys. Rev. B. —2008. — Vol. 78. — P. 085307.48. Spin coherence of two-dimensional electron gas in CdTe/(Cd,Mg)Te quantum wells / E. A. Zhukov, D. R. Yakovlev, M. Bayer, G. Karczewski, [etal.] // phys. stat. sol. (b). — 2006. — Vol. 243, no. 4. — Pp. 878–881.49. Spin coherence of a two-dimensional electron gas induced by resonant excitation of trions and excitons in CdTe/(Cd,Mg)Te quantum wells / E. A.Zhukov, D.
R. Yakovlev, M. Bayer, M. M. Glazov, [et al.] // Phys. Rev.B. — 2007. — Vol. 76, issue 20. — P. 205310.7750. Photoluminescence kinetics of indirect excitons in GaAs/AlxGa1-xAs coupled quantum wells / L. V. Butov, A. Imamoglu, A. V. Mintsev, K. L.Campman, [et al.] // Phys. Rev. B. — 1999. — Vol. 59, issue 3. —Pp. 1625–1628.52. Rotation of the plane of polarization of light in a semiconductor microcavity / D. N. Krizhanovskii, D.
Sanvitto, I. A. Shelykh, M. M. Glazov, [etal.] // Phys. Rev. B. — 2006. — Vol. 73, issue 7. — P. 073303.53. Spin relaxation in polarized interacting exciton gas in quantum wells / T.Amand, D. Robart, X. Marie, M. Brousseau, [et al.] // Phys. Rev. B. —1997. — Vol. 55, issue 15. — Pp. 9880–9896.54. Coherent spin dynamics of excitons in quantum wells / M. Dyakonov, X.Marie, T. Amand, P. Le Jeune, [et al.] // Phys. Rev. B. — 1997. —Vol. 56, issue 16. — Pp. 10412–10422.55. Exchange interaction of excitons in GaAs heterostructures / E.
Blackwood,M. J. Snelling, R. T. Harley, S. R. Andrews, [et al.] // Phys. Rev. B. —1994. — Vol. 50, issue 19. — Pp. 14246–14254.56. Formation Mechanism and Low-Temperature Instability of Exciton Rings /L. V. Butov, L. S. Levitov, A. V. Mintsev, B. D.
Simons, [et al.] // Phys.Rev. Lett. — 2004. — Vol. 92, issue 11. — P. 117404.57. Charge Separation of Dense Two-Dimensional Electron-Hole Gases: Mechanism for Exciton Ring Pattern Formation / R. Rapaport, G. Chen, D. Snoke,S. H. Simon, [et al.] // Phys. Rev. Lett.
— 2004. — Vol. 92, issue 11. —P. 117405.58. Coulomb effects in spatially separated electron and hole layers in coupledquantum wells / L. Butov, A. Imamoglu, K. Campman, A. Gossard //Journal of Experimental and Theoretical Physics. — 2001. — Vol. 92, no.2. — Pp. 260–266.59. Effects of disorder on electron spin dynamics in a semiconductor quantumwell / Z. Chen, S. G.