Microplasma breakdown of InGaN/GaN heterostructures in high-power light-emitting diodes
Author:
Publisher
Springer Science and Business Media LLC
Subject
Spectroscopy,Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s10812-013-9730-7.pdf
Reference33 articles.
1. V. Haerle, B. Hahn, S. Kaiser, A. Weimar, S. Bader, F. Eberhard, A. Plössl, and D. Eisert, Phys. Status Solidi (a), 201, No. 12, 2736–2739 (2004).
2. Y.-Y. Wong, E. Yi Chang, T.-H. Yang, J.-R. Chang, J.-T. Ku, M. K. Hudait, W.-C. Chou, M. Chen, and K.-L. Lina, J. Electrochem. Soc., 157, No. 7, H746–H749 (2010).
3. X. A. Cao, J. M. Teetsov, M. P. D’Evelyn, D. W. Merfeld, and C. H. Yan, Appl. Phys. Lett., 85 , No. 1, 7–9 (2004).
4. X. A. Cao, K. Topol, F. Shahedipour-Sandvik, J. Teetsov, P. M. Sandvik, S. F. LeBoeuf, A. Ebong, J. Kretchmer, E. B. Stokes, S. Arthur, A. E. Kaloyeros, and D. Walker, Proc. SPIE, 4776, 105–113 (2002).
5. X. A. Cao, J. A. Teetsov, F. Shahedipour-Sandvik, and S. D. Arthur, J. Cryst. Growth, 264, Nos. 1–3, 172–177 (2004).
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