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Kvantovaya Elektronika, 2003 Volume 33, Number 10, Pages 876–882 (Mi qe2516)

This article is cited in 45 papers

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Compensation for thermally induced birefringence in polycrystalline ceramic active elements

M. A. Kagan, E. A. Khazanov

Institute of Applied Physics, Russian Academy of Sciences, Nizhny Novgorod

Abstract: Polycrystalline ceramics differ significantly from single crystals in that the crystallographic axes (and hence of the axes of thermally induced birefringence) are oriented randomly in each granule of the ceramic. The quaternion formalism is employed to calculate the depolarisation in the ceramics and the efficiency of its compensation. The obtained analytic expressions are in good agreement with the numerical relations. It is shown that the larger the ratio of the sample length to the granule size, the closer the properties of the ceramics to those of a single crystal with the [111] orientation (in particular, the uncompensated depolarisation is inversely proportional to this ratio).

PACS: 42.25.Lc, 42.55.Rz

Received: 17.10.2002
Revised: 20.01.2003


 English version:
Quantum Electronics, 2003, 33:10, 876–882

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