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- 1. Appl. Phys. Lett. 85, 3780 (2004) , “Low temperature annealing of electron irradiation induced defects in 4H-SiC”, Antonio Castaldini, Anna Cavallini, Lorenzo Rigutti, Filippo NavaLow temperature annealing of electron irradiation-induced deep levels in 4H-SiC is reported. The major deep level transient spectroscopy peak S2 associated with the energy level at Ec0.39 eV disappears in the temperature range 360400 K, and some rearrangement... (Read more)
- 2. Phys. Rev. Lett. 92, 125504 (2004) , “Low Energy Electron Irradiation Induced Deep Level Defects in 6H–SiC: The Implication for the Microstructure of the Deep Levels E1/E2”, X. D. Chen, C. L. Yang, M. Gong, W. K. Ge, S. Fung, C. D. Beling, J. N. Wang, M. K. Lui, and C. C. LingN-type 6HSiC samples irradiated with electrons having energies of Ee = 0.2, 0.3, 0.5, and 1.7 were studied by deep level transient technique. No deep level was detected at below 0.2 MeV irradiation energy while for Ee0.3 MeV,... (Read more)
- 3. Appl. Phys. Lett. 79, 3950 (2001) , “Annealing behavior of vacancies and Z1/2 levels in electron-irradiated 4H–SiC studied by positron annihilation and deep-level transient spectroscopy”, A. Kawasuso, F. Redmann, R. Krause-Rehberg, M. Weidner, T. Frank, G. Pensl, P. Sperr, W. Triftshäuser, H. ItohAnnealing behavior of vacancies and the Z1/2 levels in n-type 4HSiC epilayers after 2 MeV electron irradiation has been studied using positron annihilation and deep-level transient spectroscopy. Isochronal annealing studies indicate that silicon vacancy-related defects... (Read more)
- 4. Phys. Rev. B 58, R10119 (1998) , “Negative-U centers in 4H silicon carbide”, C. G. Hemmingsson, N. T. Son, A. Ellison, J. Zhang, E. JanzénCharacterization of two negative-U centers in 4H SiC has been performed using various capacitance transient techniques. Each center gives rise to one acceptor level (-/0) and one donor level (0/+), where the electron ionization energy of the acceptor level is larger than that of the donor level. The... (Read more)
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Updated at 2010-07-20 16:50:39
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Materials
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