Optical Properties of Semiconducting Nanowires by Lambert Karel van Vugt

By Lambert Karel van Vugt

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Kuther, M. Bayer, T. Gutbrod, A. Forchel, P. A. Knipp, T. L. Reinecke, and R. Werner, Confined optical modes in photonic wires, Phys. Rev. B 58 (1998), p. 15744-15748. J. P. Reithmaier, M. Röhner, H. Zull, F. Schäfer, A. Forchel, P. A. Knipp, and T. L. Reinecke, Size Dependence of Confined Optical Modes in Photonic Quantum Dots, Phys. Rev. Lett. 78 (1997), p. 378-381. A. I. Tartakovskii, V. D. Kulakovski, Y. I. Koval, T. B. Borzenko, A. Forchel, and J. P. Reithmaier Exciton-photon interaction in low-dimensional semiconductor microcavities, J.

However, also an intricate structure can be observed in between the wires. This “wetting layer” is apparent from the image taken parallel to the substrate surface (fig. 11F). While this layer makes bulk measurements of the optical properties of the nanowires difficult it can be advantageous for other applications requiring electrical contacts to the wires. A further 5% of the samples grown under the same conditions displayed growth of ZnO layers. To examine the crystal structure of the epitaxially grown wires more closely, TEM and HRTEM measurements on individual broken off ZnO nanowires were made.

Lett. 79 (2001), p. 988-990. Y. M. Cho, W. K. Choo, H. Kim, D. Kim, and Y. 5)xO thin films, Appl. Phys. Lett. 80 (2002), p. 3358-3360. -J. -Y. Jeong, C. R. Cho, and C. H. Park, Study of diluted magnetic semiconductor: Codoped ZnO, 81 (2002), p. 4020-4022. W. Prellier, A. Fouchet, B. Mercey, C. Simon, and B. Raveau, Laser ablation of Co:ZnO films deposited from Zn and Co metal targets on (0001) Al2O3 substrates, Appl. Phys. Lett. 82 (2003), p. 3490-3492. D. P. Norton, M. E. Overberg, S. J. Pearton, K.

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