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- 1. Phys. Rev. Lett. 89, 135507 (2002) , “Diffusion and Reactions of Hydrogen in F2-Laser-Irradiated SiO2 Glass”, Koichi Kajihara, Linards Skuja, Masahiro Hirano, and Hideo HosonoThe diffusion and reactions of hydrogenous species generated by single-pulsed F2 laser photolysis of SiO-H bond in SiO2 glass were studied in situ between 10 and 330 K. Experimental evidence indicates that atomic hydrogen (H0) becomes mobile even at temperatures as... (Read more)
- 2. J. Non-Cryst. Solids 239, 16-48 (1998) , “Optically active oxygen-deficiency-related centers in amorphous silicon dioxide”, Linards SkujaThe spectroscopic properties, structure and interconversions of optically active oxygen-deficiency-related point defects in vitreous silica are reviewed. These defects, the E′-centers (oxygen vacancies with a trapped hole or 3-fold-coordinated silicons), different variants of diamagnetic... (Read more)GeO2 SiO2| EPR PL gamma-irradiation optical-spectroscopy| 0.5-1.0eV 1.0eV~ 1H 2.0eV~ 3.0eV~ 4.0eV~ 5.0eV~(larger) Chlorine E' E'-alpha E'-betha E'-delta E'-gamma Germanium H(I) H(II) Hydrogen ODC ODC(I) ODC(II) OHC Oxygen POR Silicon amorphous dangling-bond dielectric interstitial pair(=2) surface triplet vacancy | last update: Takahide Umeda
- 3. Nucl. Instrum. Methods Phys. Res. B 141, 566-574 (1998) , “Defect formation in amorphous SiO2 by ion implantation: Electronic excitation effects and chemical effects”, H. Hosono, N. MatsunamiIntrinsic defect formation in amorphous (a-) SiO2 by ion implantation was examined with emphasis upon electronic excitation effects and chemical reaction effects. 10 MeV proton beam and boron beam irradiated silica platelets to examine electronic excitation effects and chemical reaction effects. In... (Read more)
- 4. J. Non-Cryst. Solids 179, 1-9 (1994) , “The many varieties of E′ centers: a review”, Robert A. WeeksThree varieties of E′ centers with a spin state, S = 1/2, and with a G-tensor, Gx Gy 2.0003, Gz 2.0018, were identified in the early reports on paramagnetic states in irradiated α-quartz. The atomic structure of two of these had an hydrogen ion (proton) in nearby sites and hence... (Read more)
- 5. Phys. Rev. Lett. 67, 2517 (1991) , “Experimental evidence for excitonic mechanism of defect generation in high-purity silica”, T. E. Tsai and D. L. GriscomDirect evidence for the creation of oxygen-vacancy, oxygen-interstitial pairs in SiO2 glasses by an excitonic mechanism is developed from an electron-spin-resonance study of high-purity fused silicas exposed to highly focused 6.4-eV excimer laser light. (Read more)
- 6. J. Non-Cryst. Solids 116, 289-292 (1990) , “Bleaching of peroxy radical in SiO2 glass with 5 eV light*1”, H. Hosono, R. A. WeeksPeroxy radical (POR) in SiO2 glass has been found to be bleached out by illumination with 5 eV light without accompanying changes in E′ and non-bridging oxygen hole centers. An absorption band centered at 4.8 eV (FWHM; ≈ 0.8 eV is also bleached together with POR. It is suggested that... (Read more)
- 7. Phys. Rev. B 34, 7524-7533 (1986) , “Fundamental radiation-induced defect centers in synthetic fused silicas: Atomic chlorine, delocalized E' centers, and a triplet state”, D. L. Griscom and E. J. FriebeleA series of synthetic fused silicas of diverse OH contents was subjected to 100-keV x irradiations at 77 K and investigated by electron-spin-resonance techniques at ?110 K or higher temperatures. Spectra were recorded at X-band frequencies (?9.2?9.3 GHz) both as the first derivative of absorption... (Read more)
- 8. Appl. Phys. Lett. 41, 251-253 (1982) , “Defects and impurities in thermal oxides on silicon”, K. L. Brower, P. M. Lenahan, and P. V. DressendorferOxides grown at 1100 °C in dry oxygen for 60 min to a thickness of 1350 Å on silicon with and without subsequent forming gas anneals were 60Co irradiated at 4 K with doses up to 106 rad (Si). In situ electron paramagnetic... (Read more)
- 9. J. Non-Cryst. Solids 32, 313-326 (1979) , “OXYGEN-ASSOCIATED TRAPPED-HOLE CENTERS IN HIGH-PURITY FUSED SILICAS”, M. Stapelbroek, D. L. Griscom, E. J. Friebele and G. H. Sigel, Jr.Two distinct oxygen-associated trapped-hole centers (OHCs) are identified in samples of room-temperature γ-irradiated, high-purity fused silica. One, which we label the "wet" OHC, predominates in the high-OH-content (wet) silicas while the other, the "dry" OHC, is more... (Read more)
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