Optically stimulated phosphorescence in quartz over the millisecond to second time scale: insights into the role of shallow traps in delaying luminescent recombination - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Journal of Physics D: Applied Physics Année : 2010

Optically stimulated phosphorescence in quartz over the millisecond to second time scale: insights into the role of shallow traps in delaying luminescent recombination

Résumé

Telephone: +45 4677 4920 ABSTRACT Time-resolved OSL curves from quartz are usually measured over a few hundred µs because this time range best illustrates the main component in quartz which lies in the range of 30-45 µs. In this study we present the decay form of quartz time-resolved optically stimulated luminescence (TR-OSL) and optically stimulated phosphorescence (OSP) covering over 8 orders of magnitude from 50 ns to ~8 s. A detailed characterisation of the previously unstudied slowly decaying signals (ms-s time scales) is undertaken to understand the origin of these components and the role of re-trapping following optical stimulation. We present preheat and stimulation temperature dependence for both the TR-OSL and OSP curves in these time ranges and use the latter data to determine the E and s values for the participating shallow traps. We observe an abnormal decay behaviour seen as a sudden increase in the decay rate (a 'kink ') conspicuous at about 2 – 3 s in the OSP curves measured at 75 and 100°C. We satisfactorily reproduce this behaviour with a numerically solved kinetic model consisting of 4 energy levels. The physical interpretation of the kinetic rate equations is discussed in terms a three trap – one centre model or a one trap – two centres model involving localised charge transfer.
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Dates et versions

hal-00569634 , version 1 (25-02-2011)

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C Ankjaergaard, M Jain. Optically stimulated phosphorescence in quartz over the millisecond to second time scale: insights into the role of shallow traps in delaying luminescent recombination. Journal of Physics D: Applied Physics, 2010, 43 (25), pp.255502. ⟨10.1088/0022-3727/43/25/255502⟩. ⟨hal-00569634⟩

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