Nanocristaux semi-conducteurs
87
est plus facile d’atteindre le régime de confinement fort devraient aussi s’avérer extrêmement
prometteurs.
Références
[I] Bottcher C.J., Theory of Electric Polarization, (Elsevier, Amsterdam, 1973) p. 78.
[2] Kreibig U. and Zacharias P., Z. Phys., 231 (1970) 128-143.
[3] Neuendorf R., Quinten M. and Kreibig U., J. Chem. Phys., 104 (1996) 6348-6354.
[4] Efros A1.L. and Efros A.L., Sov. Phys. Semicond., 16 (1982) 772-775.
[5] Ekimov A.I. and Efros Al.L., phys. stat. sol. (b), 150 (1988) 627-633.
[6] Efros A1.L. and Rodina A.V., Phys. Rev. B, 47 (1993) 10005-10007.
[7] Ekimov A.I., Hache F., Schanne-Klein M.C., Ricard D., Flytzanis C., Kudryavtsev I.A.,
Yazeva T.V., Rodina A.V. and Efros Al.L., J. Opt. Soc. Am. B, 10 (1993) 100-107.
[8] Brus L.E., J. Chem. Phys., 80 (1984) 4403-4409.
[9] Banyai L., Gilliot P., Hu Y.Z. and Koch S.W., Phys. Rev. B, 45 (1992) 14136-14142.
[lo] Lippens P.E. and Lannoo M., Phys. Rev. B, 41 (1990) 6079-6081.
[ 111 Luttinger J.M. and Kohn W., Phys. Rev., 97 (1955) 869-883.
[12] Bawendi M.G., Wilson W.L., Rothberg L., Carroll P.J., Jedju T.M., Steigerwald M.L.
[13] Bawendi M.G., Carroll P.J., Wilson W.L. and Brus L.E., J. Chem. Phys., 96 (1992)
[14] Roussignol P., Ricard D., Lukasik J. and Flytzanis C., J. Opt. Soc. Am. B, 4 (1987) 5[15] Grabovskis V.Ya., Dzenis Ya.Ya., Ekimov A.I., Kudryavtsev I.A., Tolstoï M.N. and
[16] Norris D.J. and Bawendi M.G., Phys. Rev. B, 53 (1996) 16338-16346.
[ 171 Efros Al.L., Rosen M., Kun0 M., Nirmal M., Norris D.J. and Bawendi M.G., Phys Rev B ,
[I81 Empedocles S.A., Norris D.J. and Bawendi M.G., Phys. Rev. Lett., 77 (1996) 3873-3876
[19] Hache F., Ricard D. and Flytzanis C., Appl. Phys. Lett., 55 (1989) 1504-1506.
[20] Cotter D., Girdlestone H.P. and Moulding K., Appl. Phys. Lett., 58 (1991) 1455-1457.
[21] Hu Y.Z., Koch S.W., Lindberg M., Peyghambarian N., Pollock E.L. and Abraham F.F.,
[22] Banyai L., Hu Y.Z., Lindberg M. and Koch S.W., Phys. Rev. B, 38 (1988) 8142-8153.
[23] Ghanassi M., Piveteau L., Saviot L., Schanne-Klein M.C., Ricard D. and Flytzanis C.,
[24] Schanne-Klein M.C., Piveteau L., Ghanassi M. and Ricard D., Appl. Phys. Lett., 67
[25] Yumoto J., Fukushima S. and Kubodera K., Optics Lett., 12 (1987) 832-834.
[26] Kang K.I., McGinnis B.P., Sandalphon, Hu Y.Z., Koch S.W., Peyghambarian N.,
[27] Banfi G.P., Degiorgio V., Ghigliazza M., Tan H.M. and Tomaselli A., Phys. Rev. B, 50
[28] Banfi G.P., Degiorgio V., Fortusini D. and Tan H.M., Appl. Phys. Lett., 67 (1995) 13-15
and Brus L.E., Phys. Rev. Lett., 65 (1990) 1623-1626.
946-954.
13.
Rogulis U.T., Sov. Phys. Solid State, 31 (1989) 149-151.
54 (1996) 4843-4856.
Phys. Rev. Lett., 64 ( 1990) 1805- 1807.
Appl. PhYs. B, 61 (1995) 17-26.
(1995) 579-58 1.
Mysyrowicz A., Liu L.C. and Risbud S.H., Phys. Rev. B, 45 (1992) 3465-3468.
(1994) 5699-5702.
87
est plus facile d’atteindre le régime de confinement fort devraient aussi s’avérer extrêmement
prometteurs.
Références
[I] Bottcher C.J., Theory of Electric Polarization, (Elsevier, Amsterdam, 1973) p. 78.
[2] Kreibig U. and Zacharias P., Z. Phys., 231 (1970) 128-143.
[3] Neuendorf R., Quinten M. and Kreibig U., J. Chem. Phys., 104 (1996) 6348-6354.
[4] Efros A1.L. and Efros A.L., Sov. Phys. Semicond., 16 (1982) 772-775.
[5] Ekimov A.I. and Efros Al.L., phys. stat. sol. (b), 150 (1988) 627-633.
[6] Efros A1.L. and Rodina A.V., Phys. Rev. B, 47 (1993) 10005-10007.
[7] Ekimov A.I., Hache F., Schanne-Klein M.C., Ricard D., Flytzanis C., Kudryavtsev I.A.,
Yazeva T.V., Rodina A.V. and Efros Al.L., J. Opt. Soc. Am. B, 10 (1993) 100-107.
[8] Brus L.E., J. Chem. Phys., 80 (1984) 4403-4409.
[9] Banyai L., Gilliot P., Hu Y.Z. and Koch S.W., Phys. Rev. B, 45 (1992) 14136-14142.
[lo] Lippens P.E. and Lannoo M., Phys. Rev. B, 41 (1990) 6079-6081.
[ 111 Luttinger J.M. and Kohn W., Phys. Rev., 97 (1955) 869-883.
[12] Bawendi M.G., Wilson W.L., Rothberg L., Carroll P.J., Jedju T.M., Steigerwald M.L.
[13] Bawendi M.G., Carroll P.J., Wilson W.L. and Brus L.E., J. Chem. Phys., 96 (1992)
[14] Roussignol P., Ricard D., Lukasik J. and Flytzanis C., J. Opt. Soc. Am. B, 4 (1987) 5[15] Grabovskis V.Ya., Dzenis Ya.Ya., Ekimov A.I., Kudryavtsev I.A., Tolstoï M.N. and
[16] Norris D.J. and Bawendi M.G., Phys. Rev. B, 53 (1996) 16338-16346.
[ 171 Efros Al.L., Rosen M., Kun0 M., Nirmal M., Norris D.J. and Bawendi M.G., Phys Rev B ,
[I81 Empedocles S.A., Norris D.J. and Bawendi M.G., Phys. Rev. Lett., 77 (1996) 3873-3876
[19] Hache F., Ricard D. and Flytzanis C., Appl. Phys. Lett., 55 (1989) 1504-1506.
[20] Cotter D., Girdlestone H.P. and Moulding K., Appl. Phys. Lett., 58 (1991) 1455-1457.
[21] Hu Y.Z., Koch S.W., Lindberg M., Peyghambarian N., Pollock E.L. and Abraham F.F.,
[22] Banyai L., Hu Y.Z., Lindberg M. and Koch S.W., Phys. Rev. B, 38 (1988) 8142-8153.
[23] Ghanassi M., Piveteau L., Saviot L., Schanne-Klein M.C., Ricard D. and Flytzanis C.,
[24] Schanne-Klein M.C., Piveteau L., Ghanassi M. and Ricard D., Appl. Phys. Lett., 67
[25] Yumoto J., Fukushima S. and Kubodera K., Optics Lett., 12 (1987) 832-834.
[26] Kang K.I., McGinnis B.P., Sandalphon, Hu Y.Z., Koch S.W., Peyghambarian N.,
[27] Banfi G.P., Degiorgio V., Ghigliazza M., Tan H.M. and Tomaselli A., Phys. Rev. B, 50
[28] Banfi G.P., Degiorgio V., Fortusini D. and Tan H.M., Appl. Phys. Lett., 67 (1995) 13-15
and Brus L.E., Phys. Rev. Lett., 65 (1990) 1623-1626.
946-954.
13.
Rogulis U.T., Sov. Phys. Solid State, 31 (1989) 149-151.
54 (1996) 4843-4856.
Phys. Rev. Lett., 64 ( 1990) 1805- 1807.
Appl. PhYs. B, 61 (1995) 17-26.
(1995) 579-58 1.
Mysyrowicz A., Liu L.C. and Risbud S.H., Phys. Rev. B, 45 (1992) 3465-3468.
(1994) 5699-5702.
