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Preparation, spectroscopic characterization and energy transfer investigation of iron-chromium diffusion co-doped ZnSe for mid-IR laser applications

机译:铁铬扩散共掺杂ZnSe的制备,光谱表征和能量转移研究

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The spectroscopic characterization and energy transfer mechanism of iron-chromium co-doped ZnSe polycrystalline (Cr,Fe:ZnSe) were reported with dimension of 15 mm x 15 mm x 2 mm obtained by controlled post-growth thermal diffusion method. The infrared absorption is characterized by a strong broad-band centered at 1770 nm which can be attributed to the only spin-allowed transition T-5(2) -> E-5 within the 3d(4) shell of Cr2+ ions. Photoluminescence spectrum shows a relatively strong broad emission band centered at 4.1 mu m with a width of 0.8 mu m (FWHM) under 1770 nm excitation at room temperature and reveals effective Cr2+ -> Fe2+ energy transfer process. Room temperature photoluminescence decay about 8 mu s was measured. All the results indicate that Cr,Fe:ZnSe could achieve laser operation at 3.7-4.5 mu m via Cr2+ -> Fe+ energy transfer using a more convenient laser pump source in the near IR region. (C) 2016 Published by Elsevier B.V.
机译:报道了通过受控的生长后热扩散方法获得的尺寸为15 mm x 15 mm x 2 mm的铁铬共掺杂ZnSe多晶(Cr,Fe:ZnSe)的光谱表征和能量转移机理。红外吸收的特征是中心在1770 nm处的宽带很宽,这可以归因于Cr2 +离子3d(4)壳层中唯一的自旋允许跃迁T-5(2)-> E-5。在室温下,在1770 nm激发下,光致发光光谱显示了一个相对强的宽发射带,中心位于4.1μm,宽度为0.8μm(FWHM),并显示出有效的Cr2 +-> Fe2 +能量转移过程。测量了室温下的光致发光衰减约8μs。所有结果表明,Cr,Fe:ZnSe可以通过在近红外区域使用更方便的激光泵浦源,通过Cr2 +-> Fe +能量转移,在3.7-4.5μm的范围内实现激光操作。 (C)2016由Elsevier B.V.发布

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