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Original Articles

Vacuum ultra-violet induced thermoluminescence in γ-irradiated and non-irradiated MgO powder

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Pages 653-661 | Received 28 Sep 1976, Published online: 13 Sep 2006

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Read on this site (2)

C. Soliman. (2009) Thermoluminescence behavior of magnesium oxide exposed to gamma and ultraviolet radiations. Radiation Effects and Defects in Solids 164:4, pages 257-265.
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Yoram Kirsh & Reuven Chen. (1984) Radiation effects in polarized electrets – applications to radiation dosimetry. Radiation Effects 83:3-4, pages 161-183.
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Articles from other publishers (8)

Pooja Seth, Aayushi Jain, Lalit Goswami, Govind Gupta & Shruti Aggarwal. (2023) Defect Induced MgO: Li, Sm nanophosphor as a new highly sensitive material for thermoluminescence dosimetry. Journal of Alloys and Compounds 965, pages 171329.
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Dereje Seifu, Qing Peng, Kit Sze, Jie Hou, Fei Gao & Yucheng Lan. (2023) Electromagnetic Radiation Effects on MgO-Based Magnetic Tunnel Junctions: A Review. Molecules 28:10, pages 4151.
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Takumi Kato, Daisuke Nakauchi, Noriaki Kawaguchi & Takayuki Yanagida. (2022) Thermally stimulated luminescence properties of transparent ceramics for personal dosimetry. Japanese Journal of Applied Physics 62:1, pages 010604.
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Ahmed Kadari & Dahane Kadri. (2010) Numerical model for thermoluminescence of MgO. Physica B: Condensed Matter 405:23, pages 4713-4717.
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M N Bapat & S Sivaraman. (1986) Tunnelling of electrons from deep traps of MgO. Bulletin of Materials Science 8:1, pages 49-52.
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W. C. Las & T. G. Stoebe. (1982) Thermoluminescent mechanisms involving transition metal ion impurities and V-type centres in MgO crystals exposed to ultraviolet radiation. Journal of Materials Science 17:9, pages 2585-2593.
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R. CHEN & Y. KIRSH. 1981. The Analysis of Thermally Stimulated Processes. The Analysis of Thermally Stimulated Processes 183 221 .
S. W. S. McKeever. (1980) On the analysis of complex thermoluminescence. Glow-curves: Resolution into individual peaks. Physica Status Solidi (a) 62:1, pages 331-340.
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