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- 1. J. Appl. Phys. 99, 093108 (2006) , “Extremely high quantum efficiency of donor-acceptor-pair emission in N-and-B-doped 6H-SiC”, S. Kamiyama, T. Maeda, Y. Nakamura, M. Iwaya, H. Amano, I. Akasaki, H. Kinoshita, T. Furusho, M. Yoshimoto, T. Kimoto, J. Suda, A. Henry, I. G. Ivanov, J. P. Bergman, B. Monemar, T. Onuma, and S. F. ChichibuHigh-efficiency visible light emission in N-and-B-doped 6H-SiC epilayers was observed in photoluminescence measurements at room temperature. The orange-yellow light emission due to the recombination of donor-acceptor pairs (DAPs) has a broad spectrum with a peak wavelength of 576 nm and a... (Read more)
- 2. Phys. Rev. B 74, 035213 (2006) , “Bound exciton states of isoelectronic centers in GaAs:N grown by an atomically controlled doping technique”, Takashi Kita and Osamu WadaWe have studied bound exciton states of isoelectronic centers of nitrogen-doped GaAs by photoluminescence (PL) spectroscopy. The nitrogen doping has been performed in an atomically controlled way using the (3×3) nitrogen stable surface on GaAs(001), which has succeeded in forming a series of... (Read more)
- 3. Phys. Rev. B 74, 035208 (2006) , “Ultranarrow photoluminescence transitions of nitrogen cluster bound excitons in dilute GaAsN”, D. Karaiskaj, A. Mascarenhas, M. Adamcyk, E. C. Young, and T. TiedjeHigh resolution photoluminescence spectroscopy on heavily doped GaAs:N reveals the existence of excitons bound to a nitrogen cluster. The observed transitions are exceedingly sharp, similar to those observed for excitons bound to nitrogen pairs in high quality GaAs with the narrowest transition... (Read more)
- 4. Phys. Rev. B 73, 205205 (2006) , “Photoluminescence from the nitrogen-perturbed above-bandgap states in dilute GaAs1–xNx alloys: A microphotoluminescence study”, P. H. Tan, X. D. Luo, Z. Y. Xu, Y. Zhang, A. Mascarenhas, H. P. Xin, C. W. Tu, and W. K. GeUsing microphotoluminescence (µ-PL), in dilute N GaAs1xNx alloys, we observe a PL band far above the bandgap E0 with its peak energy following the so-called E+ transition, but with contribution from perturbed... (Read more)
- 5. J. Appl. Phys. 94, 519-524 (2003) , “Molecular nitrogen (N2-" align="middle">) acceptors and isolated nitrogen (N–) acceptors in ZnO crystals”, N. Y. Garces, Lijun Wang, N. C. Giles, L. E. Halliburton, G. Cantwell, D. B. EasonElectron paramagnetic resonance (EPR) has been used to investigate molecular nitrogen and isolated nitrogen acceptors in single crystals of ZnO. These samples were grown by the seeded chemical vapor transport method with N2 added to the gas stream. A five-line EPR spectrum is observed at... (Read more)
- 6. Physica B 340-342, 15-24 (2003) , “Defects in SiC”, E. Janzén, I. G. Ivanov, N. T. Son, B. Magnusson, Z. Zolnai, A. Henry, J. P. Bergman, L. Storasta, F. CarlssonRecent results from studies of shallow donors, pseudodonors, and deep level defects in SiC are presented. The selection rules for transitions between the electronic levels of shallow donors in 4H–SiC in the dipole approximation are derived and the ionization energy for the N donor at... (Read more)
- 7. phys. stat. sol. (a) 162, 95-151 (1997) , “EPR and ENDOR Investigations of Shallow Impurities in SiC Polytypes”, S. Greulich-WeberInvestigations of nitrogen donors in 6H-, 4H- and 3C-SiC using conventional electron paramagnetic resonance (EPR), electron nuclear double resonance (ENDOR) and optical detection of EPR and ENDOR as well as optical absorption and emission spectroscopy are reviewed and critically discussed. An... (Read more)
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