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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2015 Volume 102, Issue 5, Pages 311–315 (Mi jetpl4718)

This article is cited in 6 papers

OPTICS AND NUCLEAR PHYSICS

Role of the stimulated radiation of Yb$^{3+}$ ions in the formation of luminescence of the Y$_{0.8}$Yb$_{0.2}$F$_3$:Tm$^{3+}$ solid solution

A. V. Mikheevab, B. N. Kazakovb

a Kazan National Research Technological University, ul. Karla Marksa 68, Kazan, 420015, Russia
b Kazan Federal University, ul. Kremlevskaya 18, Kazan, 420008, Russia

Abstract: A new mechanism has been proposed for the transfer of the energy of exciting laser radiation through the donor subsystem (Yb$^{3+}$) to acceptors (Tm$^{3+}$), which induces multiphoton transitions in the acceptor subsystem. The coherence of the induced radiation of donors is of key importance in this mechanism. An analytical dependence of the intensity of the up-conversion luminescence of Tm$^{3+}$($^1$G$_4\to ^3$H$^6$) ions in the Y$_{0.8}$Yb$_{0.2}$F$_3$:Tm$^{3+}$ system on the pump power at the steady-state excitation by $934$-nm infrared radiation of a laser diode has been obtained using the mathematical technique of the theory of Poisson processes. In contrast to known mechanisms, this dependence approximates the experimental dependence well in a wide power range ($200$$1200$ mW). The proposed model is applicable for any system where the energy of pump radiation is transferred to acceptors through the subsystem of donor ions.

Received: 03.06.2015
Revised: 09.07.2015

DOI: 10.7868/S0370274X15170051


 English version:
Journal of Experimental and Theoretical Physics Letters, 2015, 102:5, 279–283

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