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JOURNALS // Prikladnaya Mekhanika i Tekhnicheskaya Fizika // Archive

Prikl. Mekh. Tekh. Fiz., 2015 Volume 56, Issue 1, Pages 180–189 (Mi pmtf1000)

This article is cited in 9 papers

Laser ceramics with disordered crystalline structure

S. N. Bagayeva, V. V. Osipovb, E. V. Pestryakova, V. I. Solomonovbc, V. A. Shitovb, R. N. Maksimovbc, A. N. Orlovb, V. V. Petrova

a Institute of Laser Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia
b Institute of Electrophysics, Ural Branch, Russian Academy of Sciences, Ekaterinburg, 620016, Russia
c Yeltsyn Ural Federal University, Ekaterinburg, 620002, Russia

Abstract: New ceramic materials based on yttrium oxide $\mathrm{Y}_2\mathrm{O}_3$ with isovalent ($\mathrm{Yb}_2\mathrm{O}_3$, $\mathrm{Nd}_2\mathrm{O}_3$, and $\mathrm{Lu}_2\mathrm{O}_3$) and heterovalent ($\mathrm{ZrO}_2$ and $\mathrm{HfO}_2$) components are synthesized, and their spectroscopic properties are investigated. Possible channels of losses in the gain of stimulated radiation in the radiative transitions of $\mathrm{Nd}^{3+}$ and $\mathrm{Yb}^{3+}$ ions in ceramics with heterovalent additives are studied. The results of measurements of $\mathrm{Y}_2\mathrm{O}_3$ ceramics doped with zirconium and hafnium ions, the emission bandwidth and the lifetimes of the ${}^4\mathrm{F}_{3/2}$ and ${}^2\mathrm{F}_{5/2}$ levels of $\mathrm{Nd}^{3+}$ and $\mathrm{Yb}^{3+}$ ions, respectively, are presented. It is shown that the nonradiative population of the ${}^4\mathrm{F}_{3/2}$ levels of neodymium ions is due to their dipole-dipole interaction with $\mathrm{Zr}^{3+}$ and $\mathrm{Hf}^{3+}$ ions. Laser generation in [($\mathrm{Yb}_{0,01}\mathrm{Lu}_{0,24}\mathrm{Y}_{0,75})_2\mathrm{O}_3]_{0,88}(\mathrm{ZrO}_2)_{0,12}$ ceramics with disordered crystalline structure was achieved at a wavelength of $1034$ nm with a differential efficiency of $29\%$.

Keywords: laser ceramics, yttrium oxide, zirconium oxide, hafnium oxide, neodymium ions, ytterbium ions.

UDC: 546.643, 548.313

Received: 16.10.2014

DOI: 10.15372/PMTF20150122


 English version:
Journal of Applied Mechanics and Technical Physics, 2015, 56:1, 150–157

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