4.5 Article

Linear and nonlinear optical properties of dye-doped KDP crystals: Effect of thermal treatment

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OPTICS COMMUNICATIONS
卷 282, 期 6, 页码 1141-1147

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ELSEVIER
DOI: 10.1016/j.optcom.2008.11.043

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Potassium dihydrogen phosphate; Dye-doped crystal; Luminescence; Defects; Nonlinear optical properties

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Potassium dihydrogen phosphate crystals (KDP, KH2PO4) doped with the organic xylenol orange (XO) dye are grown, the XO concentration in the crystal matrix is about 10 ppm. The spectral and luminescent properties of nominally pure, dye-doped and dye-doped/annealed at 150 degrees C crystals (KDP, KDP:XO and KDP:XOan) were measured. The annealing temperature effect on the degree of dye protonation in the crystal matrix is established. Analysis of the IR-absorption spectra reveals a strong interaction between the incorporated dye molecules and the hydrogen subsystem of the matrix. The nonlinear optical (NLO) properties of KDP, KDP:XO and KDP:XOan crystals are studied within the self-action effect of pico-second laser pulses at 532 nm. The mechanism of photoinduced bleaching and the effects of laser beam self-focusing (in KDP) and self-defocusing (in KDP:XO and KDP:XOan are supposed to be due to resonance excitation of the subsystems of intrinsic defects and dye molecules, correspondingly. For KDP:XOan it is shown that thermal annealing of intrinsic crystal defects leads to domination of more effective NLO response of the subsystem of dye molecules that is correlated with photoluminescence data. (c) 2008 Elsevier B.V. All rights reserved.

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