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By U. Zeitler, I. Hapke-Wurst, D. Sarkar, R. J. Haug, H. Frahm, K. Pierz, A. G. M. Jansen (auth.), Prof. Bernhard Kramer (eds.)

ISBN-10: 3540429077

ISBN-13: 9783540429074

ISBN-10: 354045618X

ISBN-13: 9783540456186

The current quantity comprises the written models of lots of the invited talks of the Spring assembly of the Condensed subject Physics part of the Deutsche Physikalische Gesellschaft held from March 25 to 29, 2002 in Regensburg, Germany. additionally contained are these talks offered as a part of the Symposia such a lot of that have been geared up by way of a number of divisions in collaboration and lined a desirable number of themes of present curiosity. therefore this quantity displays the prestige of condensed topic physics in Germany within the yr 2002. specifically, one notes a mild switch in paradigms: from quantum dots and wires to spin delivery and delicate subject structures within the broadest feel. This turns out to mirror the current normal development in physics. however, a wide element of the invited papers pay attention to nanostructured matter.

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Landwehr, Appl. Phys. Lett. 74, 498 (1999). 29 14. R. Engelhardt, U. W. Pohl, D. Bimberg, D. Litvinov, A. Rosenauer, and D. Gerthsen, J. Appl. Phys. 86, 5578 (1999). 29 15. N. Peranio, A. Rosenauer, D. Gerthsen, S. V. Sorokin, I. V. Sedova, and S. V. Ivanov, Phys. Rev. B 61, 16015 (2000). 29 16. F. Kreller, J. Puls, and F. Henneberger, Appl. Phys. Lett. 69, 2406 (1996). 30 17. S. Yamaguchi, H. Kurusu, Y. Kawakami, Sz. Fujita, and Sg. Fujita, Phys. Rev. B 61, 10303 (2000). see also: A. Klochikhin, A.

The low threshold density is attributed to 0D excitons. This is confirmed by a high characteristic temperature T0 . In ideal QDs an infinite T0 is expected, whereas in QW lasers T0 is well below 100 K. The observed decrease in T0 above T = 100 K is attributed to the delocalisation of excitons and carriers from the QDs. e. the QW, resulting in 2D-like excitons/carriers. These experiments show, that localisation energy of excitons/carriers up to room temperature (RT) is problematically in ZnCdSe QD structures.

Grundmann, N. Kirstaedter, O. G. Schmidt, M. H. Mao, V. M. Ustinov, A. Y. Egorov, A. E. Zhukov, P. S. I. Alferov, S. S. Ruvimov, U. Gosele, J. Heydenreich: phys. stat. sol. (b) 194, 159 (1996). 19 26. T. Passow, M. Klude, K. Leonardi, D. Hommel: in Proceedings of the 25th International Conference on the Physics of Semiconductors, M. Miura, T. ) (Springer, Berlin 2001) pp. 1607–1608. 19 27. M. Klude, T. Passow, H. Heinke, D. Hommel: phys. stat. sol. (b) 229, 1029 (2002). 19 28. -L. Chuang, A. Ishibashi, S.

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Advances in Solid State Physics by U. Zeitler, I. Hapke-Wurst, D. Sarkar, R. J. Haug, H. Frahm, K. Pierz, A. G. M. Jansen (auth.), Prof. Bernhard Kramer (eds.)

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