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Электронный каталог: Bulavin, M. - Distribution of Radionuclide Impurities in Irradiated Topaz
Bulavin, M. - Distribution of Radionuclide Impurities in Irradiated Topaz

Статья
Автор: Bulavin, M.
Физика элементарных частиц и атомного ядра. Письма: Distribution of Radionuclide Impurities in Irradiated Topaz : Abstract
б.г.
ISBN отсутствует
Автор: Bulavin, M.
Физика элементарных частиц и атомного ядра. Письма: Distribution of Radionuclide Impurities in Irradiated Topaz : Abstract
б.г.
ISBN отсутствует
Статья
Bulavin, M.
Distribution of Radionuclide Impurities in Irradiated Topaz : Abstract / M.Bulavin, T.Enik, E.Kuznetsova, A.Rogachev, S.Tutunnikov, K.Vergel, B.Yuldashev, I.Zinicovscaia, I.Ulanova // Физика элементарных частиц и атомного ядра. Письма : пер. с англ. – 2025. – Т. 22, № 2. – C. 189. – URL: http://www1.jinr.ru/Pepan_letters/panl_2025_2/23_Bulavin_ann.pdf.
Irradiation is one of the most efficient techniques to enhance gemstones, and color-enhanced topaz is the best example of commercial application of neutron irradiation. After irradiation, the color of topaz turns into deep blue resulting in so-called London Blue Topaz. However, neutron irradiation induces radionuclides of different half-life time and thus causes radioactivity of the gemstones. For color-enhanced topaz, it may take up to several months or even years for residual radioactivity to reach a safe level. The residual activity may significantly vary among topaz samples even if they have originally been obtained from the same deposit. We present results of spectroscopic analysis of about 350 irradiated topaz samples. Large variation in residual activity measured in several months after the irradiation is observed. Different types and different concentration of radionuclides are identified. To optimize the color enhancement procedure and to reduce the storage time required to reach the safe level of residual activity, a pre-irradiation procedure is proposed.
Спец.(статьи,препринты) = С 36 - Физика твердого тела$
ОИЯИ = ОИЯИ (JINR)2025
Bulavin, M.
Distribution of Radionuclide Impurities in Irradiated Topaz : Abstract / M.Bulavin, T.Enik, E.Kuznetsova, A.Rogachev, S.Tutunnikov, K.Vergel, B.Yuldashev, I.Zinicovscaia, I.Ulanova // Физика элементарных частиц и атомного ядра. Письма : пер. с англ. – 2025. – Т. 22, № 2. – C. 189. – URL: http://www1.jinr.ru/Pepan_letters/panl_2025_2/23_Bulavin_ann.pdf.
Irradiation is one of the most efficient techniques to enhance gemstones, and color-enhanced topaz is the best example of commercial application of neutron irradiation. After irradiation, the color of topaz turns into deep blue resulting in so-called London Blue Topaz. However, neutron irradiation induces radionuclides of different half-life time and thus causes radioactivity of the gemstones. For color-enhanced topaz, it may take up to several months or even years for residual radioactivity to reach a safe level. The residual activity may significantly vary among topaz samples even if they have originally been obtained from the same deposit. We present results of spectroscopic analysis of about 350 irradiated topaz samples. Large variation in residual activity measured in several months after the irradiation is observed. Different types and different concentration of radionuclides are identified. To optimize the color enhancement procedure and to reduce the storage time required to reach the safe level of residual activity, a pre-irradiation procedure is proposed.
Спец.(статьи,препринты) = С 36 - Физика твердого тела$
ОИЯИ = ОИЯИ (JINR)2025