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Ruby fluorescence lifetime measurements for temperature determinations at high (p,T)
Authors:Johannes D Bauer  Lkhamsuren Bayarjargal  Björn Winkler
Institution:1. Goethe-Universit?t Frankfurt am Main, Institut für Geowissenschaften , Abt. Kristallographie, Altenh?ferallee 1, 60438 , Frankfurt am Main , Germany j.bauer@kristall.uni-frankfurt.de;3. Goethe-Universit?t Frankfurt am Main, Institut für Geowissenschaften , Abt. Kristallographie, Altenh?ferallee 1, 60438 , Frankfurt am Main , Germany
Abstract:The lifetime of the ruby R1 fluorescence line was measured as a function of pressure (up to about 20 GPa) and temperature (550 K) in an externally heated diamond anvil cell (DAC). At constant temperatures, the lifetime is increasing linearly with increasing pressure. The slope of the pressure dependence is constant up to a temperature of 450 K and it is decreasing at higher temperatures. At constant pressure, the lifetime is exponentially decreasing with increasing temperature. The (p, T)-dependence can be parametrized by the combination of a linear and an exponential function. This allows an accurate p, T-determination by the combination of fluorescence spectroscopy using Sm2+-doped strontium tetraborate and lifetime measurements of ruby, as the energy of the Sm2+ fluorescence is nearly temperature-independent.
Keywords:high pressure and temperature  fluorescence lifetime  diamond anvil cell
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