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- W2034295855 abstract "Abstract We have measured the low temperature luminescence of the self-trapped excitons, STE, in NaCl submitted to very dense electronic excitations induced by swift heavy ions. We have compared the features of the excitonic luminescence excited by X-ray and by high energy ion irradiations. The luminescence yield results from a competition between radiative (temperature independent) and non-radiative (temperature dependent) recombinations. For swift heavy ion irradiations, the high density of the deposited energy is supposed to induce a very significant transient temperature increase in the vicinity of the ion path. In this paper we have studied the influence of a thermal spike on the STE luminescence yield. Using numerical computations based on equilibrium thermodynamics, we predict the local increase of the temperature as a function of time t, and of the distance r, from the ion path. At every (r, t) we calculate the temperature induced decrease of the STE non-radiative recombination lifetimes, and we deduce the corresponding changes in the STE luminescence yields. It appears that the numerical predictions of the luminescence yield are very sensitive to the radial extent of the energy deposition, and consequently of the STE concentration. The role of the different parameters and the hypotheses of the calculations are discussed." @default.
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- W2034295855 date "1995-12-01" @default.
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- W2034295855 title "Self-trapped exciton luminescence under dense electronic excitations: Ion-induced transient thermal effects" @default.
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- W2034295855 doi "https://doi.org/10.1080/10420159508218837" @default.
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